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<ep-patent-document id="EP04743112B1" file="EP04743112NWB1.xml" lang="en" country="EP" doc-number="1639229" kind="B1" date-publ="20080430" status="n" dtd-version="ep-patent-document-v1-2">
<SDOBI lang="en"><B000><eptags><B001EP>ATBECHDEDKESFRGBGRITLILUNLSEMCPTIESI....FIRO..CY..TRBGCZEEHUPLSK................</B001EP><B003EP>*</B003EP><B005EP>J</B005EP><B007EP>DIM360 Ver 2.4  (29 Nov 2007) -  2100000/0</B007EP></eptags></B000><B100><B110>1639229</B110><B120><B121>EUROPEAN PATENT SPECIFICATION</B121></B120><B130>B1</B130><B140><date>20080430</date></B140><B190>EP</B190></B100><B200><B210>04743112.7</B210><B220><date>20040628</date></B220><B240><B241><date>20060118</date></B241><B242><date>20060509</date></B242></B240><B250>en</B250><B251EP>en</B251EP><B260>en</B260></B200><B300><B310>0315251</B310><B320><date>20030630</date></B320><B330><ctry>GB</ctry></B330></B300><B400><B405><date>20080430</date><bnum>200818</bnum></B405><B430><date>20060329</date><bnum>200613</bnum></B430><B450><date>20080430</date><bnum>200818</bnum></B450><B452EP><date>20071119</date></B452EP></B400><B500><B510EP><classification-ipcr sequence="1"><text>E21B  43/10        20060101AFI20050117BHEP        </text></classification-ipcr><classification-ipcr sequence="2"><text>E21B  29/10        20060101ALI20050117BHEP        </text></classification-ipcr><classification-ipcr sequence="3"><text>E21B  41/00        20060101ALI20050117BHEP        </text></classification-ipcr></B510EP><B540><B541>de</B541><B542>VORRICHTUNG UND VERFAHREN ZUR ABDICHTUNG EINES BOHRLOCHES</B542><B541>en</B541><B542>APPARATUS AND METHOD FOR SEALING A WELLBORE</B542><B541>fr</B541><B542>APPAREIL ET PROCEDE DE SCELLEMENT D'UN PUITS DE FORAGE</B542></B540><B560><B561><text>WO-A-00/77431</text></B561><B561><text>WO-A-01/04535</text></B561><B561><text>WO-A-01/18353</text></B561><B561><text>WO-A-01/33037</text></B561><B561><text>WO-A-02/35058</text></B561><B561><text>WO-A-99/13195</text></B561><B561><text>GB-A- 2 388 858</text></B561><B561><text>US-A- 3 203 451</text></B561><B561><text>US-A- 4 624 306</text></B561><B561><text>US-A- 6 142 230</text></B561><B561><text>US-A1- 2002 050 360</text></B561><B561><text>US-A1- 2002 092 648</text></B561><B561><text>US-A1- 2002 144 822</text></B561><B561><text>US-A1- 2002 185 274</text></B561><B561><text>US-A1- 2003 188 868</text></B561></B560></B500><B700><B720><B721><snm>HEAD, Philip</snm><adr><str>The Glade,
Springwoods</str><city>Virginia Water,
Surrey GU25 4PW</city><ctry>GB</ctry></adr></B721><B721><snm>LURIE, Paul George</snm><adr><str>The Jays,
Longhurst Road</str><city>East Horsley,
Surrey KT24 6AF</city><ctry>GB</ctry></adr></B721></B720><B730><B731><snm>BP EXPLORATION OPERATING COMPANY LIMITED</snm><iid>01862884</iid><irf>BPX 10029</irf><adr><str>Chertsey Road</str><city>Sunbury-on-Thames, Middlesex TW16 7BP</city><ctry>GB</ctry></adr></B731><B731><snm>XL Technology Limited</snm><iid>04352500</iid><irf>BPX 10029</irf><adr><str>Gibb House, 
Kennel Ride,</str><city>Ascot, Berkshire SL5 7NT</city><ctry>GB</ctry></adr></B731></B730><B740><B741><snm>Hymers, Ronald Robson</snm><iid>00053271</iid><adr><str>BP INTERNATIONAL LIMITED 
Patents Division 
Chertsey Road</str><city>Sunbury-on-Thames
Middlesex, TW16 7LN</city><ctry>GB</ctry></adr></B741></B740></B700><B800><B840><ctry>AT</ctry><ctry>BE</ctry><ctry>BG</ctry><ctry>CH</ctry><ctry>CY</ctry><ctry>CZ</ctry><ctry>DE</ctry><ctry>DK</ctry><ctry>EE</ctry><ctry>ES</ctry><ctry>FI</ctry><ctry>FR</ctry><ctry>GB</ctry><ctry>GR</ctry><ctry>HU</ctry><ctry>IE</ctry><ctry>IT</ctry><ctry>LI</ctry><ctry>LU</ctry><ctry>MC</ctry><ctry>NL</ctry><ctry>PL</ctry><ctry>PT</ctry><ctry>RO</ctry><ctry>SE</ctry><ctry>SI</ctry><ctry>SK</ctry><ctry>TR</ctry></B840><B860><B861><dnum><anum>GB2004002763</anum></dnum><date>20040628</date></B861><B862>en</B862></B860><B870><B871><dnum><pnum>WO2005003511</pnum></dnum><date>20050113</date><bnum>200502</bnum></B871></B870><B880><date>20060329</date><bnum>200613</bnum></B880></B800></SDOBI><!-- EPO <DP n="1"> -->
<description id="desc" lang="en">
<p id="p0001" num="0001">The present invention relates to an apparatus and method for forming an annular seal between a patch and a tubular in a wellbore or between a patch and an open hole wellbore.</p>
<p id="p0002" num="0002">In the course of completing an oil and/or gas well, it is common practice to run a string of protective casing into the well bore and then to run production tubing inside the casing. The annulus between the casing and the surrounding formation is then sealed with a deposit of cement to prevent fluid from flowing through the annulus from one formation zone to another. If the casing traverses a hydrocarbon-bearing zone of the formation, the casing is perforated to create flow apertures through the casing and cement so that the formation fluids can flow into the well. Such perforations may subsequently be sealed using an expandable sealing member, preferably in the form of a radially expandable tubular metal patch lowered into the wellbore through the production tubing on a conventional patch setting tool. A patch may also be used to seal holes in the casing caused by corrosion or to reinforce corroded casing sections which have not yet become perforated. Still other applications, such as bridging the gap between sections of parted casing will also be apparent to those skilled in the art. In some completions, however, the wellbore is uncased, and an open face is established across the hydrocarbon bearing zone. A patch may also be used in such open face wellbores in order to increase the mechanical strength of the wellbore wall or to seal off an open face zone, for example, a water-producing zone. Where the patch is used to increase the mechanical strength of the wellbore wall, the patch is subsequently perforated where it traverses a hydrocarbon bearing zone of the formation. In other<!-- EPO <DP n="2"> --> completions, a sandscreen is used in open face wellbores. Suitably, the sandscreen that is run into the open face wellbore comprises one or more tubular ("patch") sections that lie across one or more non-hydrocarbon-bearing intervals of the wellbore, for example, a water-producing interval, and one or more screen sections that lie across one or more hydrocarbon-bearing intervals of the wellbore. Generally, an external casing packer is set in the annulus formed between the tubular section(s) of the sandscreen and the open face wellbore at each end of the tubular section(s). A cement slurry may also be introduced into the annulus formed between the tubular section(s) and the open face wellbore to ensure that the non-hydrocarbon-bearing interval(s), for example, water producing interval(s) is effectively sealed off. It would therefore be advantageous to eliminate the requirement for the external casing packers and for cementing the tubular section(s) of a sandscreen.</p>
<p id="p0003" num="0003">According to <patcit id="pcit0001" dnum="US20030015246A"><text>US 2003/0015246</text></patcit>, perhaps the most common prior art approach to sealing perforations in a casing has been to use a patch comprising a cylindrical steel sleeve with a rubber-like gasket material bonded to the outer surface of the steel sleeve. Generally, for deployment, the patch is wrapped about an expansion device which is typically a mechanically operated expander plug and is subsequently lowered through the production tubing to the uncovered perforation. Upon reaching the perforation the patch is expanded to seal the perforation. Typically the patch is held in place in the well casing by friction. However, in many wells there are one or more restrictions in the production tubing with the minimum restriction imposing a limit on the diameter of the unexpanded patch. During expansion of the patch, the radial thickness of the wall of the cylindrical steel sleeve decreases. In order to mitigate the risk of the expanded patch collapsing under the external pressure exerted by the formation fluids, the maximum expansion ratio for a tubular metal patch is about 30%. A problem therefore arises when the minimum restriction in the production tubing is small compared with the diameter of the wellbore as it may not be possible to expand the patch to form a fluid-tight seal with the casing or the wall of an open hole wellbore without exceeding the maximum expansion ratio.</p>
<p id="p0004" num="0004">A solution to this problem has been to use a vertically corrugated metal liner (for example, as described in <patcit id="pcit0002" dnum="US3203451A"><text>US 3,203,451</text></patcit>) wherein the external cross-sectional perimeter of the corrugated liner is greater than the internal cross-sectional circumference of the<!-- EPO <DP n="3"> --> casing but the maximum external cross-sectional dimension of the corrugated liner is less than the internal diameter of the casing so the liner can be inserted into the casing. After the liner is placed at the desired location in the casing, an expander tool is run through the corrugated liner to cause it to assume a cylindrical shape inside the casing. The liner is thus left in substantially maximum compressive hoop stress. An expansion tool comprising an expanding cone, a collet head and collet spring arms is described. The arms have outwardly enlarged portions which perform the final forming action to force the corrugated liner into a substantially cylindrical shape as the cone and collet head are pulled through the corrugated tube. It is said that the expression "expanding" the liner into contact with the casing may be misleading. The expanding cone does expand the liner in the sense that it forces the outer ridges of the corrugations outwardly until they come in contact with the casing. Then the inner corrugations are, in a sense, expanded radially outwardly until they come in contact with the casing. It would therefore be evident to the person skilled in the art that the reformed liner is merely elastically reformed and is not subsequently plastically expanded to form a seal with the wellbore wall.</p>
<p id="p0005" num="0005">An apparatus and a method for expanding a liner patch, in particular, a corrugated liner patch, in a tubular to seal a hole therein is described in <patcit id="pcit0003" dnum="WO98214444A"><text>WO 98/214444</text></patcit>. The apparatus comprises a body having a top portion, a bottom portion and a middle portion, the middle portion having an outer diameter greater than the top portion and an outer diameter greater than the bottom portion; a first set of fingers disposed around the top portion of said body and a second set of fingers disposed around the bottom portion of said body; the arrangement being such that, in use, said fingers can be urged radially outwardly by displacement thereof over said middle portion (collet expander). Preferably, a cone is located above said body to facilitate deformation of the liner patch. The liner patch is expanded over the cone and finally over the fingers as the apparatus is pulled all of the way through the liner patch. Again, the term expansion refers to elastically reforming the patch as opposed to plastically expanding the reformed patch.</p>
<p id="p0006" num="0006"><patcit id="pcit0004" dnum="US2002018527A"><text>US Patent Application US 2002/018527</text></patcit> relates to methods and apparatus for expanding tubulars in a wellbore. An embodiment of the apparatus comprises an electric motor, at least one pump and a hydraulic fluid reservoir disposed in a housing with an expansion tool disposed therebelow. The apparatus is run into the well on a wireline which provides support for the weight of the apparatus and electrical power<!-- EPO <DP n="4"> --> for the components therein. The apparatus is lowered into a tubular in a wellbore to a predetermined depth. Thereafter, electric power supplied to the motor operates the pump to provide pressurised fluid to actuate the expansion tool and the shaft extending from the pump provides rotational power to the expansion tool. The apparatus can have a tractor run into the well on the wireline along with the expansion tool and housing. In use, the tractor imports axial movement to the apparatus in the wellbore while the expansion tool rotates and expandable members thereupon increase the diameter of the tubular. In order to direct rotation to the expansion tool and prevent the housing from rotating, the apparatus can be equipped with an anchor assembly to prevent rotational movement of the housing while allowing the apparatus to move axially within the wellbore. The methods disclosed in <patcit id="pcit0005" dnum="US2002018527A"><text>US 2002/018527</text></patcit> require the tubular to be installed into the desired location within the wellbore prior to the apparatus being lowered into the wellbore to expand the tubular.</p>
<p id="p0007" num="0007">It is an object of the present invention to provide a method and apparatus for forming an annular fluid-tight seal between at least a portion of a plastically expandable tubular patch and the wall of a wellbore (an open face wellbore or a cased/lined wellbore).</p>
<p id="p0008" num="0008">It is also an object of the present invention to provide a patch comprising a metal tube that is capable of being deformed such that in its deformed state the patch can pass through a restriction in a wellbore to the location where the patch is to be deployed. Once at the desired location in the wellbore, the patch may be elastically reformed into a substantially regular tubular shape having an outer diameter greater than the minimum restriction in the wellbore and subsequently at least a portion of the reformed tubular patch may be plastically expanded to form a fluid tight seal with the wall of the wellbore (open face wellbore, or a cased/lined wellbore) wherein the expansion ratio for the reformed patch is in the range 10 to 30%.</p>
<p id="p0009" num="0009">Thus, according to a first embodiment of the present invention there is provided an apparatus for plastically expanding a tubular patch in a wellbore comprising:
<ol id="ol0001" compact="compact" ol-style="">
<li>(a) a gripping assembly capable of holding the tubular patch at a desired location within the wellbore comprising at least one radially extendible gripping member for gripping the interior wall of the tubular patch and a mechanical means for radially extending the gripping member(s);<!-- EPO <DP n="5"> --></li>
<li>(b) a rotatable expander tool, disposable in the tubular patch, comprising a plurality of expander elements radially extendible therefrom adapted to engage with the interior wall of the tubular patch and a mechanical means for radially extending the expander elements; and</li>
<li>(c) at least one electric motor for, optionally, supplying motive power to the mechanical means for radially extending the gripping member(s) of the optional gripping assembly, for supplying motive power to the mechanical means for radially extending the expander elements of the expander tool, and for providing rotation to the expander tool.</li>
</ol></p>
<p id="p0010" num="0010">According to a second embodiment of the present invention there is provided a method for sealing a hole in a tubular in a wellbore or for sealing an open hole interval (also referred to as an "open face interval") of a wellbore comprising:
<ol id="ol0002" compact="compact" ol-style="">
<li>(A) introducing a tubular patch system into the wellbore and locating the system adjacent a hole in the tubular or adjacent the open hole interval of the wellbore that it is desired to seal, the tubular patch system comprising a tubular patch and an apparatus for plastically expanding the tubular patch comprising (a) a gripping assembly capable of holding the tubular patch at a desired location within the wellbore comprising at least one radially extendible gripping member for gripping the interior wall of the tubular patch as the patch is being introduced and located at the desired location in the wellbore and a mechanical means for radially extending the gripping member(s); (b) a<!-- EPO <DP n="6"> --> rotatable expander tool, disposed in the tubular patch, comprising a plurality of expander elements radially extendible therefrom adapted to engage with the interior wall of the tubular patch and a mechanical means for radially extending the expander elements; and (c) at least one electric motor for supplying motive power to the mechanical means for radially extending the gripping member(s) of the gripping assembly and to the mechanical means for radially extending the expander elements of the expander tool, and for providing rotation to the expander tool; and</li>
<li>(B) actuating the expander tool to plastically expand the tubular patch to seal off the hole in the tubular or to seal off the open hole portion of the wellbore.</li>
</ol></p>
<p id="p0011" num="0011">The apparatus for plastically expanding the tubular patch may be run into the wellbore suspended from conventional wireline (a reinforced steel cable encasing one or more electrical wires or segmented electrical conductors) which provides support for the weight of the apparatus and electrical power for actuating the components of the expansion tool. Alternatively, the apparatus may be run into the wellbore suspended from electric coiled tubing. Suitable electric coiled tubing is described in <patcit id="pcit0006" dnum="GB2359571A"><text>UK patent application no. GB 2359571-A</text></patcit>.</p>
<p id="p0012" num="0012">Suitably, the apparatus may comprise a single electric motor for providing motive power to the mechanical means for radially extending the gripping member(s) of the gripping assembly, for providing motive power to the mechanical means for radially extending the plurality of expander elements of the expander tool and for rotating the expander tool, typically via a drive means. Alternatively, the mechanical means for radially extending the gripping member(s), the mechanical means for radially extending the plurality of expander elements and the drive means for rotating the expander tool may be provided with dedicated electric motors. For avoidance of doubt, the mechanical means for radially extending the gripping member(s) of the gripping assembly and the mechanical means for radially extending the expander elements of the expander tool are also capable of radially retracting the gripping member(s) and expander elements respectively.</p>
<p id="p0013" num="0013">Preferably, the mechanical means for radially extending and retracting the expander elements of the expander tool is a jack mechanism or a cone displacement mechanism comprising a conical member that is moveable in a longitudinal direction with respect to the expander elements such that the expander elements are displaced<!-- EPO <DP n="7"> --> radially outwardly or inwardly over the tapering surface of the conical member. Any other suitable electrically actuated mechanical means known to the person skilled in the art for radially extending and retracting the expander elements may also be employed. Suitably, the drive means for rotating the expander tool is a rotatable shaft. Thus, the electric motor provides rotational movement to an output shaft that is connected to the expander tool to provide rotation thereto.</p>
<p id="p0014" num="0014">It is also envisaged that the expander tool may be hydraulically actuated via at least one hydraulic pump. Thus, electric power supplied to the motor may be used to operate the pump to provide pressurised fluid to the expander tool to radially extend the expander elements. For example, the pressurised fluid may be used to actuate the cone displacement mechanism. Alternatively, the pressurised fluid may be used to directly urge the expander elements radially outwards into engagement with the interior wall of the patch. In addition, a shaft extending from the hydraulic pump may provide rotational motion to the expansion tool. Typically, the apparatus of the present invention may comprise a reservoir for a hydraulic fluid disposed in a housing. Suitably, the expansion tool is arranged below the housing. Alternatively, the pressurised fluid may be filtered wellbore fluid.</p>
<p id="p0015" num="0015">During the running in operation, the interior wall of the tubular patch, preferably, a tubular metal patch, is gripped by the least one radially extendible gripping member of the gripping assembly, for example, by at least one radially extendible "slip". Preferably, the at least one radially extendible gripping member grips the interior wall of the tubular metal patch at the upper end thereof. Suitably, the gripping member(s) comprises teeth or other gripping elements. Preferably, the apparatus is provided with a plurality of "slips", preferably 2 to 4 slips. Suitable "slips" for use with the patch would be well known to the person skilled in the art. Preferably, the mechanical means for radially extending and retracting the gripping member(s) of the gripping assembly may be a jack mechanism or a cone displacement mechanism, as described above for the expander tool. Preferably, the gripping assembly remains fixed in place in the tubular patch while the expander tool is rotated i.e. the gripping assembly does not rotate with the expander tool. It is also envisaged that the radially extendible gripping member(s) of the gripping assembly may be hydraulically actuated, as described above for the expander tool. Thus, the electric motor may drive a hydraulic<!-- EPO <DP n="8"> --> pump thereby providing pressurised fluid to the gripping assembly to radially extend the gripping member(s)</p>
<p id="p0016" num="0016">Suitably, as an alternative to holding the patch at the desired location using at least one radially extendible gripping member, an upper section of the patch may be fixed in position in the wellbore by means of a plurality of mechanical dimples, for example circular shaped dimples arranged circumferentially around the tubing at the desired location, as described in Figure 16 of <patcit id="pcit0007" dnum="US6223823B"><text>US 6,223,823</text></patcit>. Suitably, at least 3 dimples are provided. The mechanical dimples may be activated by means of internal pressure applied by the expander elements of the expander tool. Preferably, a resilient annular sealing member is provided on the external surface of the patch in the vicinity of the dimples to impart an anchoring surface against which the dimples engage thus improving the contact between the patch and the wall of the tubular (for example, the casing or liner of a wellbore) or with the open hole wellbore (open face wellbore). Thus, the gripping assembly may be omitted from the apparatus of the present invention.</p>
<p id="p0017" num="0017">Once the tubular patch system has been lowered to a level proximate a perforation or a damaged section of a tubular (for example, casing or liner) or the system lies within an open hole interval of the wellbore, at least a portion of the tubular patch is plastically expanded by rotating the expander tool and actuating the mechanical means for radially extending the expander elements such the expander elements engage with the interior wall of the patch and a portion of the patch is plastically expanded against the wall of the tubular (for example, casing or liner) or the wall of the open hole wellbore thereby forming an annular fluid-tight seal. Suitably, the expander elements of the expander tool are rollers or balls that may be radially extended or retracted via the electrically actuated mechanical means (for example, a jack mechanism or cone displacement mechanism). Preferably the rollers have a longitudinal length of from 0.5 to 5 inches (1.3 to 12.7 cm), for example 0.5 to 3 (1.3 to 7.6 cm) inches with the longitudinal length of the annular seal corresponding to the longitudinal length of the rollers. Where the radially extendible elements of the expander tool are balls, the annular seal has a longitudinal length of approximately half the ball diameter. The diameter of the balls and hence the longitudinal length of the annular seal is dependent upon the internal diameter of the wellbore and the external diameter of the tubular patch. For example, where a 3 inch (7.6 cm)<!-- EPO <DP n="9"> --> external diameter tubular patch is deployed in a wellbore having a 4.5 inch (11.4 cm) internal diameter casing, the balls preferably have a diameter of at least 1.5 inch (3.8 cm), preferably, 1.5 to 3 inches (3.8 to 7.6 cm), for example about 2 inches (5.1 cm). Accordingly, the annular seal preferably has a longitudinal length of 0.75 to 1.5 inches (1.9 to 3.8 cm).</p>
<p id="p0018" num="0018">Preferably, the expander tool is also provided with an electrically actuated mechanical means for moving the radially extendible expander elements of the expander tool longitudinally within the tubular patch thereby extending the annular seal. Preferably, the mechanical means is a screw mechanism. Suitably, the screw mechanism is actuated by means of a dedicated electric motor. Accordingly, the apparatus of the present invention may be used to form a seal along the entire length of the patch by gradually moving the expander tool through the patch. Alternatively, the apparatus of the present invention may be used to form a plurality of annular (ring) seals. Preferably the annular (ring) seals have a curved profile to mitigate the risk of the seal being put under stress which can lead to increased corrosion of the patch and/or the tubular.</p>
<p id="p0019" num="0019">Preferably, the annular (or ring) seal is formed by partially expanding a portion of the tubular metal patch and then longitudinally extending the expanded portion before further expanding the portion of the tubular metal patch and then further longitudinally extending the expanded portion of the tubular metal patch and repeating these steps until the portion of the patch is plastically expanded against the wall of the tubular or against the open hole and a fluid tight annular (or ring) seal is formed between the patch and the wall of the tubular or the open hole respectively. The patch is now locked in place in the tubular or in the open hole and the radially extendible expander elements may be retracted and the gripping member(s) of the gripping assembly (for example, slips) unset before moving the apparatus to a new position in the patch. The gripping member(s) of the gripping assembly (for example, slips) is then reset and a further annular (or ring) seal may be formed as described above. Preferably, the apparatus is provided with sensors for monitoring the expansion of the patch and the position of the expansion tool and gripping assembly in the wellbore thereby ensuring that the ring seals are formed at the desired location in the wellbore.</p>
<p id="p0020" num="0020">Suitably, the apparatus of the present invention may be used to deploy a patch comprising an inner metal tube and an outer resilient sealing member. Suitably, the<!-- EPO <DP n="10"> --> inner metal tube is formed from steel, preferably, carbon steel. As discussed above, the thickness of the inner metal tube will be a function of the diameter of the wellbore and the yield and tensile strength of the metal forming the tube. Preferably, the thickness of the inner metal tube is in the range 0.25 to 0.5 inches (0.6 to 1.3 cm). Preferably, the outer resilient sealing member is formed from an elastomeric material that is resistant to the well environments i.e. temperature, pressure, well fluids, and the like. Suitably, the elastomeric material is selected from rubber (for example, silicone rubber), polymers of ethylene-propylene diene monomer (EPDM), polytetrafluoroethylene, polyphenylene sulfide, and perfluoroelastomers. The outer resilient sealing member may be a sheath extending along substantially the entire length of the patch or may comprise at least one outer resilient sealing ring arranged at a location where it is desired to form an annular fluid-tight seal with the casing, liner or the wall of the open hole wellbore and having a length corresponding to the longitudinal length of the annular seal. Typically the patch may be provided with a plurality of outer resilient sealing rings thereby allowing a plurality of annular fluid-tight seals to be formed. Typically, the outer resilient sealing rings have a longitudinal length of 1 to 5 inches (2.5 to 12.7 cm). Suitably, the outer resilient sealing rings are arranged at the upper and lower ends of the patch although the sealing rings may also be arranged at intervals along the patch, for example, every 0.5 to 2 feet (15 to 61 cm). Typically, the thickness of the outer resilient sealing member (sheath or ring) is in the range 0.05 to 0.15 inches (1.3 to 3.8 cm), for example, about 0.1 inches (2.5 mm). Suitably, the outer resilient sealing member may be adhered to the inner metal tube. Alternatively, the inner metal tube may be a tight fit within the outer resilient annular sealing member.</p>
<p id="p0021" num="0021">Where a tubular patch is to be used to seal a hole in a tubular (or to seal off an open hole interval of the wellbore), at least one ring seal is formed above the hole (or above the open hole interval that it is desired to seal) and at least one ring seal is formed below the hole (or below the open hole interval).</p>
<p id="p0022" num="0022">Thus, according to a third embodiment of the present invention there is provided a method for sealing a hole in a tubular in a wellbore or for sealing an open hole interval of a wellbore comprising:
<ol id="ol0003" compact="compact" ol-style="">
<li>(A) introducing a tubular patch into the wellbore and locating the tubular patch adjacent the hole in the tubular or adjacent the open hole interval of the wellbore;</li>
<li>(B) (i) plastically expanding a first portion of the tubular patch above the hole in the<!-- EPO <DP n="11"> --> tubular or above the open hole interval of the wellbore into annular sealing engagement with the tubular or the open hole to form a first annular seal and (ii) plastically expanding a second portion of the tubular patch below the hole in the tubular or below the open hole interval of the wellbore into annular sealing engagement with the tubular or the open hole to form a second annular seal thereby sealing the hole in the tubular or the open hole interval of the wellbore.</li>
</ol></p>
<p id="p0023" num="0023">Preferably, the tubular patch is located in the desired position in the wellbore and the annular seals are formed using the apparatus of the first embodiment of the present invention.</p>
<p id="p0024" num="0024">In order to strengthen the seal, a plurality of annular seals may be formed above and below the hole in the tubular or above and below the open hole interval of the wellbore. An advantage of sealing off the hole in a tubular or of sealing off an open hole interval of the wellbore by forming annular seals between the patch and the tubular or the open hole interval is that there is no requirement to plastically expand the entire patch. Suitably, the open hole interval of the wellbore may be an interval that requires hydraulic isolation, for example, a water-producing interval of the wellbore. An advantage of hydraulically isolating an open hole interval of a wellbore using the method of the third embodiment of the present invention is that this allows external casing packers and the use of cement to be eliminated.</p>
<p id="p0025" num="0025">The method of the third embodiment of the present invention may also be used in conjunction with a sandscreen comprising at least one tubular ("patch") section and at least one screen section where the sandscreen is run into a wellbore until the screen section(s) lie across a hydrocarbon-bearing interval of an open hole wellbore and the tubular section(s) lies across an interval of the open hole wellbore that it is desired to hydraulically isolate. It is envisaged that the sandscreen may be run into the wellbore supported by the gripping assembly of the apparatus of the first embodiment of the present invention. If necessary, the apparatus may be provided with a traction device to assist in placing the sandscreen at the desired location in the open hole wellbore, particularly, where the wellbore is a deviated wellbore (for example, a side track or lateral well). It is also envisaged that the sandscreen may be deployed in the wellbore using a conventional "running-in" tool before passing the apparatus of the first embodiment of the present invention through the sandscreen (supported on wireline or<!-- EPO <DP n="12"> --> electric coiled tubing) to the location where it is desired to form the annular fluid-tight seals, in which case the gripping assembly may be omitted from the apparatus. Preferably, at least one annular fluid-tight seal is formed at each end of the tubular ("patch") section(s) of the sandscreen. Preferably, a plurality of rings seals may be formed at intervals along the entire length of the tubular ("patch")section(s) of the sandscreen.</p>
<p id="p0026" num="0026">Suitably, the apparatus of the first embodiment of the present invention and the methods of the second and third embodiments of the present invention may be used to deploy a tubular metal patch in a wellbore at a location below a restriction, D<sub>1</sub>, wherein the patch is capable of being deformed into an irregularly shaped tube having a maximum external cross-sectional dimension, D<sub>2</sub>, and of being subsequently elastically reformed into a substantially regularly shaped tube having an external diameter, D<sub>3</sub>, wherein D<sub>2</sub> is less than D<sub>1</sub> and D<sub>3</sub> is greater than D<sub>1</sub>, and wherein at least a section of the reformed tube is capable of being plastically expanded to an external diameter, D<sub>4</sub>, to form a fluid tight annular seal with the wall of a tubular (for example, casing or liner of a wellbore) or the wall of an open hole interval of a wellbore and wherein the expansion ratio, [(D<sub>4</sub>-D<sub>3</sub>)/D<sub>3</sub>] x100, is in the range 10 to 30%, preferably 20 to 30%, for example 25 to 30%.</p>
<p id="p0027" num="0027">By plastically expanded is meant that the expanded shape is maintained when an expansion pressure is no longer being applied.</p>
<p id="p0028" num="0028">Suitably, the deformed tube may be reformed into a tube of substantially uniform external diameter (i.e. a tube having a substantially circular transverse cross-section), preferably, into its original tubular shape, prior to plastically expanding at least a section of the reformed tube to form an annular fluid-tight seal with the tubular or open hole. Alternatively, a section of the deformed tube may be reformed and plastically expanded to form an annular seal prior to reforming and optionally plastically expanding the remainder of the deformed tube.</p>
<p id="p0029" num="0029">Suitably, production tubing is run into the wellbore and the patch is deployed in the wellbore through the production tubing. Typically, the production tubing has one or more restrictions therein such that the deformed patch must be capable of passing through the minimum restriction in the production tubing.</p>
<p id="p0030" num="0030">Preferably, the metal tube is deformed into a longitudinally corrugated tube of<!-- EPO <DP n="13"> --> the types well known to the person skilled in the art. It is also envisaged that the metal tube may be deformed into any other shape that is capable of passing through the restriction, D<sub>1</sub>, for example, the patch may be deformed to put a groove therein, as described in <patcit id="pcit0008" dnum="US3489220A"><text>US 3,489,220</text></patcit>. Suitably, the metal tube may be deformed to a size smaller than the restriction, D<sub>1</sub>, using a set of rollers located above the wellhead.</p>
<p id="p0031" num="0031">Typically, the deformed metal tube has a maximum external diameter, D<sub>2</sub>, that is slightly less than the restriction, D<sub>1</sub>, for example 5 to 10% less than the restriction, D<sub>1</sub>. At least a portion of the reformed tubular patch is capable of being plastically expanded to form an annular fluid tight seal with the wall of the wellbore wherein the total expansion ratio for the deformed tube, [(D<sub>4</sub>-D<sub>2</sub>)/D<sub>2</sub>]x100 is 40 to 50% with the proviso that the expansion ratio for the reformed tube, [(D<sub>4</sub>-D<sub>3</sub>)/D<sub>3</sub>]x100, is in the range 10 to 30%, preferably 20 to 30%, for example 25 to 30%.</p>
<p id="p0032" num="0032">Suitably, the patch may be deployed in a cased wellbore, a lined wellbore or an open hole wellbore with the patch forming an annular fluid tight seal with the wall of the casing, liner or the open hole respectively. It is envisaged that a plurality of portions of the reformed patch may be plastically expanded to form a plurality of annular seals. Alternatively, the deformed tubular patch may be reformed and plastically expanded along substantially the entire length thereof.</p>
<p id="p0033" num="0033">Suitably, the patch may be from 10 to 1000 feet (3 to 305 m) in length, preferably, 30 to 600 feet (9 to 183 m), more preferably 50 to 300 feet (15 to 91 m), for example, 100 to 200 feet (30 to 61 m). The patch may be formed from tubular metal sections having a length of 5 to 40 feet (1.5 to 12 m), preferably 20 to 30 feet (6 to 9 m). The sections of the patch may be joined together using conventional flush joints having a maximum diameter smaller than the minimum restriction in the wellbore, in which case there is no requirement to deform the joints. Alternatively, the sections of the patch may be joined together using deformable joints. Suitably, the deformable joint comprises a male connection on a first tubular metal section of the patch and a female connection on a second tubular metal section of the patch where the male and female connections are provided with interlockable complementary formations such that when the joint is deformed and subsequently reformed, the complementary formations of the male and female connections do not break apart. For example, the male and female connections may be provided with interlockable dovetailed threads. Preferably,<!-- EPO <DP n="14"> --> the deformable joint is also capable of being plastically expanded to allow the patch to be plastically expanded along its entire length. Suitable expandable joints are well known to the person skilled in the art and may be adapted to be interlockable, for example, by employing interlockable dovetailed threads.</p>
<p id="p0034" num="0034">Suitably, the elastically deformable and plastically expandable metal patch is formed from steel, for example, a low carbon steel or other suitable metal alloy. Typically, the elastically deformable and plastically expandable metal patch may be provided with an outer resilient sealing member (sheath or ring), as described above. Preferably, the elastically deformable and plastically expandable metal patch is coated with a resilient material, typically an elastomeric material, to provide an improved annular seal with the tubular (for example, casing or liner) or with the wall of the open hole interval of the wellbore upon plastic expansion of the reformed tube. Preferably, the elastomeric material is resistant to the well environment, i.e. temperature, pressure, well fluids, and the like. Suitable elastomeric materials are as described above.</p>
<p id="p0035" num="0035">As discussed above, the thickness of the wall of the metal tube decreases as it is plastically expanded. The required thickness of the wall after expansion is a function of the diameter of the wellbore and the yield and tensile strength of the metal forming the tube. In general, as the wellbore diameter increases it is necessary to increase the thickness of the wall of the plastically expanded metal tube in order for the tube to apply sufficient force to seal the hole in the tubular (for example, perforations in the casing or liner of the wellbore) or to seal the open hole wellbore. Preferably, the thickness of the wall of the plastically expanded metal tube is in the range 0.25 to 0.5 inches (0.6 to 1.3 cm) for a plastically, expanded tube having an internal diameter of 6 to 8 inches (15 to 20 cm). Typically, the thickness of the coating of resilient material is in the range 0.05 to 0.2 inches (1.3 to 5 mm), for example, about 0.1 (2.5 mm) inch.</p>
<p id="p0036" num="0036">In yet a further embodiment of the present invention there is provided a patch that may be deployed in a wellbore using the apparatus and method of the present invention. Suitably, the patch may be deployed at a location below a restriction, D<sub>1</sub>, the patch comprising a metal tube having an outer diameter small enough to pass through the restriction wherein at least one section of the metal tube is of increased wall thickness, t<sub>1</sub>, compared with the wall thickness, t<sub>2</sub>, of adjacent sections of the metal tube (i.e. t<sub>1</sub>&gt;t<sub>2</sub>) and wherein the at least one section of metal tube of increased wall thickness<!-- EPO <DP n="15"> --> is capable of being plastically expanded to form an annular (or ring) seal. Preferably, the patch is capable of being deployed through production tubing. Preferably, the difference in wall thickness, t<sub>1</sub>-t<sub>2</sub>, corresponds to the radial distance through which the section of metal tube of increased thickness is plastically expanded to form an annular fluid-tight seal. Preferably, the section of metal tube of increased wall thickness, t<sub>1</sub>, has a reduced inner diameter compared with adjacent sections of the tube of wall thickness, t<sub>2</sub>. Preferably, after plastic expansion of the section of tube of increased thickness the inner diameter of the plastically expanded section of tube is substantially the same as the inner diameter of the adjacent non-plastically expanded sections of the metal tube. Preferably, prior to expansion the patch has a substantially uniform outer diameter.</p>
<p id="p0037" num="0037">The section(s) of metal tube of increased wall thickness may be plastically expanded against the metal casing or metal liner of a wellbore to form a metal to metal annular seal. It is also envisaged that the section(s) of tube of increased wall thickness may be coated with a resilient material, preferably, an elastomeric material, in order to provide an improved seal in an open hole wellbore. Suitable elastomeric materials are as described above.</p>
<p id="p0038" num="0038">Preferably, the section(s) of metal tube of increased wall thickness, t<sub>1</sub>, may be provided with an annular recess or groove on the outer surface thereof having an annular resilient sealing member, for example, an O-ring located therein. Preferably, the annular resilient sealing member is formed of an elastomeric material. Suitable elastomeric materials are as described above. Expansion of the section(s) of the metal tube of increased wall thickness, t<sub>1</sub>, will force the annular resilient sealing member against the metal casing or metal liner of a wellbore or against the wall of an open hole wellbore thereby forming a fluid-tight seal.</p>
<p id="p0039" num="0039">The patch of this further embodiment of the present invention is preferably plastically expanded using the apparatus of the first embodiment of the present invention. However, it is also envisaged that the patch may be deployed using any conventional expansion tool, in particular, an expansion tool having hydraulically actuated, radially expandable members, as described in <patcit id="pcit0009" dnum="US20010045284A"><text>US 2001/0045284</text></patcit>.</p>
<p id="p0040" num="0040">When the apparatus of the first embodiment of the present invention is used to reform a deformed tubular patch, for example, a longitudinally corrugated tube, at least<!-- EPO <DP n="16"> --> a portion of the tube is first reformed into its original tubular shape using the expander elements of the expander tool before plastically expanding the portion of reformed tube to form an annular (or ring) seal between the patch and,the casing or liner or open hole wellbore. Preferably, the deformed tubular patch is reformed along the entire length thereof. Suitably, a plurality of portions of the reformed tubular patch may be plastically expanded using the apparatus of the present invention to form a plurality of annular (or ring) seals or, alternatively, the entire tubular patch may be plastically expanded to form a seal with the wall of the casing, liner or the open hole wellbore.</p>
<p id="p0041" num="0041">In a further aspect of the present invention, the apparatus of the first embodiment of the present invention may be used to form an annular (or ring) seal between a liner string and a cased or lined interval of a wellbore such that the annular (or ring) seal acts as a liner hanger in addition to sealing the annulus between the liner and the wall of the cased or lined interval of wellbore. Thus, the ring seal must be capable of taking the weight of the liner string. Preferably, the "liner hanger" comprises a plurality of ring seals, for example, 2 to 5 annular seals. Typically, the liner string is lowered into the wellbore, supported by the radially extendible gripping member(s) of the gripping assembly, until the upper section of the liner string overlaps the lower section of the cased or lined interval of the wellbore with the expander tool located in the upper section of the liner string. The expander elements of the expander tool are then extended radially outwardly into engagement with the interior wall of the liner string and a portion of the liner string is plastically expanded against the casing or lining to form an annular fluid tight ring seal between the upper section of the liner string and the lower section of the cased or lined interval of wellbore. Where the liner string is deployed in a deviated wellbore (lateral or side track wellbore), the apparatus of the first embodiment of the present invention may be provided with a tractor for running the liner string into the deviated wellbore. It is also envisaged that a prior art means for running the liner string into a wellbore may be employed. Once the liner string is in place in the wellbore, the apparatus of the first embodiment of the present invention may run into the wellbore to form the "liner hanger". As would be evident to the person skilled in the art, the gripping assembly may be omitted from the apparatus when the liner string is run into the wellbore using a prior art "running-in" means.</p>
<p id="p0042" num="0042">The present invention will now be illustrated by reference to <figref idref="f0001 f0002 f0003 f0004 f0005 f0006">Figures 1 to 10</figref>.<!-- EPO <DP n="17"> --></p>
<p id="p0043" num="0043"><figref idref="f0001">Figure 1</figref> is a transverse cross-sectional view illustrating a deformable tubular patch in an undeformed state 1, and deformed into a longitudinally corrugated tube 2 having a maximum outer diameter, D<sub>2</sub> less than the minimum restriction 3 in a wellbore. <figref idref="f0001">Figure 2</figref> shows the patch reformed into its original tubular shape 4 and in a plastically expanded state 5. <figref idref="f0002">Figure 3</figref>, illustrates a deformable and plastically expandable dovetail joint 6 for joining sections of the deformable tubular metal patch.</p>
<p id="p0044" num="0044"><figref idref="f0003">Figure 4</figref> is a longitudinal cross sectional view showing a tubular metal patch 10 in position in a cased wellbore 11 prior to expansion of the patch against the casing wall 12. The patch 10 is provided with a section 13 of decreased internal diameter and hence increased wall thickness. <figref idref="f0003">Figure 5</figref> shows the patch after a metal to metal ring seal 14 has been formed at the location of the section of decreased internal diameter.</p>
<p id="p0045" num="0045"><figref idref="f0004">Figure 6</figref> illustrates a modified patch of the type shown in <figref idref="f0003">Figures 4 and 5</figref> wherein the section 13 of patch of decreased internal diameter and hence increased wall thickness is provided with an external groove 17 adapted to receive an O-ring, 15, formed from an elastomeric material. <figref idref="f0004">Figure 7</figref> shows the patch in annular (or ring) sealing engagement with the walls of a wellbore 16 which may be either a cased or lined wellbore or an open hole wellbore.</p>
<p id="p0046" num="0046">Referring to <figref idref="f0005">Figure 8</figref>, a production tubing 20 having a restriction 21 is positioned within the casing 22 of a wellbore. A liner 23 is hung from the casing 22 via a casing hanger 24. An apparatus for deploying a tubular metal patch 25 is lowered into the wellbore through the production tubing 20 suspended from a wireline 26. The apparatus comprises a connector 27, a controller 28, a first electric motor 29 for actuating a screw mechanism (not shown) for radially extending and retracting slips 30, and an expander tool comprising a jack mechanism 31 for radially extending and retracting rollers 32, and a rotatable shaft 33 that extends from a second electric motor 34 through patch 25 to a third electric motor 35. The second electric motor 34 actuates the jack mechanism 31 and a means (not shown) for driving the rotatable shaft 33 while the third electric motor 35 actuates a screw mechanism (not shown) for moving the rollers 32 in a longitudinal direction within the patch 25. The slips 30 are shown in their radially extended position gripping the tubular metal patch 25. Once the patch 25 is in the desired location in the wellbore, the shaft 33 is rotated and the rollers 32 are gradually radially extended to plastically expand the patch until the patch forms an<!-- EPO <DP n="18"> --> annular fluid tight seal with the wall of the liner 23. At various stages during the radial extension of the rollers 32, the third electric motor 35 actuates the screw mechanism to move the rollers upwardly and downwardly within the patch 25 thereby extending the annular seal. <figref idref="f0005">Figure 9</figref> shows the result of this operation with a section of the patch 25 plastically expanded to form an annular seal 36 with the wall of liner 23. Referring to <figref idref="f0006">Figure 10</figref>, the rollers 32 and slips 30 are retracted before moving the expansion tool to a new position in the patch and radially extending the slips 30 to grip the interior wall of the patch. The expansion tool is then actuated to plastically expand the new section of patch, as discussed above. The third electric motor 35 may be provided with a "steady" having a centraliser 37 that engages with the liner 23. This operation may be repeated until the entire lower section of the patch has been plastically expanded against the wellbore wall. As shown in <figref idref="f0006">Figure 11</figref>, the apparatus may then be moved upwardly through the wellbore until the expander tool is located in the upper 38 unexpanded part of the patch 25. The slips 30 are then radially extended to engage with the wall of the casing 22 and the expander tool actuated as described above to plastically expand the upper section 38 of the tubular metal patch. The rollers 32 and slips 30 may then be retracted and the apparatus removed from the wellbore by pulling the wireline leaving behind the plastically expanded patch in annular sealing engagement with the wall of the liner 23. Although the installation of the patch is described in relation to a vertical wellbore, the apparatus of the present invention may also be deployed in a deviated well, for example, a side track or lateral well. If necessary, the apparatus may be provided with a tractor to assist in moving the tubular patch through the deviated well.</p>
</description><!-- EPO <DP n="19"> -->
<claims id="claims01" lang="en">
<claim id="c-en-01-0001" num="0001">
<claim-text>An apparatus for plastically expanding a tubular patch (25) in a wellbore comprising:
<claim-text>(a) a gripping assembly capable of holding the tubular patch at a desired location within the wellbore comprising at least one radially extendible gripping member (30) for gripping the interior wall of the tubular patch (25) and a mechanical means for radially extending the gripping member(s);</claim-text>
<claim-text>(b) a rotatable expander tool, disposable in the tubular patch (25), comprising a plurality of expander elements (32) radially extendible therefrom adapted to engage with the interior wall of the tubular patch (25) and a mechanical means (31) for radially extending the expander elements (32); and</claim-text>
<claim-text>(c) at least one electric motor (29, 34) for supplying motive power to the mechanical means for radially extending the gripping member(s) of the gripping assembly, for supplying motive power to the mechanical means (31) for radially extending the expander elements (32) of the expander tool, and for providing rotation to the expander tool.</claim-text></claim-text></claim>
<claim id="c-en-01-0002" num="0002">
<claim-text>An apparatus as claimed in Claim 1 that is suspended from wireline (26) or electric coiled tubing.</claim-text></claim>
<claim id="c-en-01-0003" num="0003">
<claim-text>An apparatus as claimed in Claims 1 or 2 wherein the mechanical means for radially extending the gripping member(s) of the gripping assembly and/or for radially extending the expander elements of the expander tool is a jack mechanism or a conical displacement mechanism.</claim-text></claim>
<claim id="c-en-01-0004" num="0004">
<claim-text>An apparatus as claimed in any one of the preceding claims wherein the<!-- EPO <DP n="20"> --> expander elements (32) of the expander tool are rollers or balls.</claim-text></claim>
<claim id="c-en-01-0005" num="0005">
<claim-text>An apparatus as claimed in any one of the preceding claims wherein the expander tool is provided with a further mechanical means for moving the expander elements (32) of the expander tool longitudinally within the tubular patch (25) and the at least one electric motor (c) (35) also provides motive power to the further mechanical means.</claim-text></claim>
<claim id="c-en-01-0006" num="0006">
<claim-text>An apparatus as claimed in any one of the preceding claims wherein the expander tool is provided with a drive means (33) for rotating the expander tool and the at least one electric motor (c) (34) also provides rotation to the drive means (33).</claim-text></claim>
<claim id="c-en-01-0007" num="0007">
<claim-text>An apparatus as claimed in Claim 6 wherein the mechanical means for radially extending the gripping member(s) of the gripping assembly, the mechanical means for radially extending the expander elements of the expander tool, the mechanical means for moving the expander elements of the expander tool longitudinally within the tubular patch and the drive means for rotating the expander tool are provided with dedicated electric motors (29, 34, 35).</claim-text></claim>
<claim id="c-en-01-0008" num="0008">
<claim-text>A method for sealing a hole in a tubular in a wellbore or for sealing an open hole interval of a wellbore comprising:
<claim-text>(A) introducing a tubular patch system into the wellbore and locating the system adjacent a hole in the tubular or adjacent the open hole interval of the wellbore that it is desired to seal, the tubular patch system comprising a tubular patch (25) and an apparatus for plastically expanding the tubular patch comprising (a) a gripping assembly capable of holding the tubular patch at a desired location within the wellbore comprising at least one radially extendible gripping member (30) for gripping the interior wall of the tubular patch (25) as the patch is being introduced and located at the desired location in the wellbore and a mechanical means for radially extending the gripping member(s); (b) a rotatable expander tool, disposed in the tubular patch, comprising a plurality of expander elements (32) radially extendible therefrom adapted to engage with the interior wall of the tubular patch (25) and a mechanical means (31) for radially extending the expander elements (32); and (c) at least one electric motor (29,34) for supplying motive power to the mechanical means for radially extending the gripping member(s) of the gripping assembly, for supplying motive power to the mechanical means (31) for radially extending the expander elements (32) of the expander tool, and for providing rotation to the expander tool;<!-- EPO <DP n="21"> --> and</claim-text>
<claim-text>(B) actuating the expander tool to plastically expand the tubular patch to seal off the hole in the tubular or to seal off the open hole portion of the wellbore.</claim-text></claim-text></claim>
<claim id="c-en-01-0009" num="0009">
<claim-text>A method as claimed in Claim 8 wherein the at least one radially extendible gripping member engages with and grips the interior wall of the tubular patch (25) at the upper end thereof.</claim-text></claim>
<claim id="c-en-01-0010" num="0010">
<claim-text>A method as claimed in Claims 8 or 9 wherein a portion of the patch (25) is plastically expanded by rotating the expander tool and actuating the mechanical means (31) for radially extending the expander elements (32) of the expander tool so that the expander elements (32) engage with the interior wall of the patch (25) and the patch (25) is plastically expanded to form a fluid tight annular (or ring) seal with the wall of the tubular or with the open hole.</claim-text></claim>
<claim id="c-en-01-0011" num="0011">
<claim-text>A method as claimed in Claim 10 wherein the expander tool comprises a further mechanical means for moving the expander elements in a longitudinal direction within the patch (25) and the further mechanical means is electrically actuated to move the expander elements of the expander tool longitudinally through the patch (25) thereby extending the annular seal or plastically expanding the entire tubular patch.</claim-text></claim>
<claim id="c-en-01-0012" num="0012">
<claim-text>A method as claimed in Claim 10 or 11 wherein, after forming the annular seal, the radially extendible expander elements (32) of the expander tool and the radially extendible gripping member(s) (30) of the gripping assembly are retracted and the apparatus is moved to a new position in the patch (25) to form a further annular seal.</claim-text></claim>
<claim id="c-en-01-0013" num="0013">
<claim-text>A method as claimed in Claim 12 wherein at least one annular seal is formed above the hole in the tubular or above the open hole interval of the wellbore and at least one annular seal is formed below the hole in the tubular or below the open hole interval of wellbore.</claim-text></claim>
<claim id="c-en-01-0014" num="0014">
<claim-text>A method as claimed in any one of Claims 8 to 13 wherein the patch (25) is deployed in the wellbore at a location below a restriction (21), D<sub>1</sub>, and the patch comprises a metal tube that has been deformed into an irregularly shaped tube having a maximum external cross-sectional dimension, D<sub>2</sub>, that is less than D<sub>1</sub> and wherein after the patch has passed through the restriction to the desired location in the<!-- EPO <DP n="22"> --> wellbore, the expander tool is actuated to reform the patch into a substantially regular shaped tube having an external diameter, D<sub>3</sub>, that is greater than D<sub>1</sub>, and to plastically expand at least a portion of the reformed tube to an external diameter, D<sub>4</sub>, to form a fluid tight annular seal with the wall of the tubular or the wall of the open hole wellbore wherein the expansion ratio, [(D<sub>4</sub>-D<sub>3</sub>)/D<sub>3</sub>] x100, of the reformed tube is in the range 10 to 30%.</claim-text></claim>
<claim id="c-en-01-0015" num="0015">
<claim-text>A method as claimed in Claim 14 wherein the tubular patch system is passed to the selected location in the wellbore through the production tubing (20).</claim-text></claim>
<claim id="c-en-01-0016" num="0016">
<claim-text>A method as claimed in Claims 14 or 15 wherein the deformed patch is a longitudinally corrugated tube.</claim-text></claim>
<claim id="c-en-01-0017" num="0017">
<claim-text>A method as claimed in any one of Claims 8 to 16 wherein the tubular metal patch (25) is provided with an outer resilient sealing member to provide an improved seal with the tubular or with the wall of the open hole wellbore.</claim-text></claim>
<claim id="c-en-01-0018" num="0018">
<claim-text>A method as claimed in any one of claims 8 to 17 wherein the patch is formed from a plurality of tubular metal sections wherein the sections of the patch are joined together using deformable and optionally plastically expandable joints.</claim-text></claim>
<claim id="c-en-01-0019" num="0019">
<claim-text>A method as claimed in any one of Claims 8 to 18 wherein at least one section of the patch is of increased wall thickness (13), t<sub>1</sub>, compared with the wall thickness, t<sub>2</sub>, of adjacent sections of the patch (i.e. t<sub>1</sub>&gt;t<sub>2</sub>) and wherein the rotatable expander tool is actuated to plastically expand the at least one section of metal tube of increased wall thickness to form an annular seal with the tubular or open hole wellbore.</claim-text></claim>
<claim id="c-en-01-0020" num="0020">
<claim-text>A method as claimed in Claim 19 wherein the.section(s) of metal tube of increased wall thickness (13), t<sub>1</sub>, is provided with an annular recess or groove (17) on the outer surface thereof having an annular resilient sealing ring (15) located therein and wherein the mechanical means for radially extending the expander elements is actuated to plastically expand the at least one section of metal tube of increased wall thickness (13), t<sub>1</sub>, thereby forcing the annular resilient sealing ring against the tubular or against the wall of the open hole wellbore to form a fluid-tight annular seal.</claim-text></claim>
<claim id="c-en-01-0021" num="0021">
<claim-text>A method as claimed in claim 8 for sealing a hole in a tubular in a wellbore or for sealing an open hole interval of a wellbore comprising:
<claim-text>(A) introducing a tubular patch (25) into the wellbore and locating the tubular patch (25) adjacent the hole in the tubular or adjacent the open hole interval of the wellbore;<!-- EPO <DP n="23"> --></claim-text>
<claim-text>(B) (i) plastically expanding a first portion of the tubular patch (25) above the hole in the tubular or above the open hole interval of the wellbore into annular sealing engagement with the tubular or the open hole to form a first annular seal and (ii) plastically expanding a second portion of the tubular patch (25) below the hole in the tubular or below the open hole interval of the wellbore into annular sealing engagement with the tubular or the open hole to form a second annular seal thereby sealing the hole in the tubular or the open hole interval of the wellbore.</claim-text></claim-text></claim>
<claim id="c-en-01-0022" num="0022">
<claim-text>A method as claimed in Claim 21 wherein further portions of the tubular patch (25) are plastically expanded into annular sealing engagement with the tubular or the open hole to form further annular seals.</claim-text></claim>
<claim id="c-en-01-0023" num="0023">
<claim-text>A method as claimed in Claims 21 or 22 wherein the tubular patch (25) is a tubular section of a sandscreen that comprises at least one tubular section and at least one screen section.</claim-text></claim>
<claim id="c-en-01-0024" num="0024">
<claim-text>A method as claimed in Claims 21 or 22 wherein the tubular patch (25) is deployed in the wellbore at a location below a restriction (21), D<sub>1</sub>, and the patch comprises a metal tube that has been deformed into an irregularly shaped tube having a maximum external cross-sectional dimension, D<sub>2</sub>, that is less than D<sub>1</sub> and wherein after the patch has passed through the restriction to the desired location in the wellbore, the patch is reformed into a substantially regular shaped tube having an external diameter, D<sub>3</sub>, that is greater than D<sub>1</sub>, and the first and second annular seals are formed by plastically expanding the first and second portions of the reformed tube to an external diameter, D<sub>4</sub>, wherein the expansion ratio, [(D<sub>4</sub>-D<sub>3</sub>)/D<sub>3</sub>] x100, of the first and second portions of the reformed tube is in the range 10 to 30%.</claim-text></claim>
<claim id="c-en-01-0025" num="0025">
<claim-text>A method as claimed in any one of the preceding claims wherein the first, second and optional further portion(s) of the patch that are plastically expanded to form the annular seals with the tubular or open hole are of increased wall thickness, t<sub>1</sub>, compared with the wall thickness, t<sub>2</sub>, of adjacent portions of the patch.</claim-text></claim>
<claim id="c-en-01-0026" num="0026">
<claim-text>A method as claimed in any one of Claims 21 to 25 wherein the ring seals are formed using the apparatus of any one of Claims 1 to 7.</claim-text></claim>
<claim id="c-en-01-0027" num="0027">
<claim-text>A method as claimed in claim 8 in which the tubular patch is a liner string, the liner string is located in the wellbore such that an upper section of the liner string<!-- EPO <DP n="24"> --> overlaps with a lower section of a cased or lined interval of the wellbore and the expander tool is actuated so that the expander elements plastically expand a portion of the upper section of the liner string to form an annular seal between the upper section of the liner string and the lower section of the cased or lined interval of the wellbore and optionally, actuating the expander tool to form further annular seals between the upper section of the liner string and the lower section of the cased or lined interval of the wellbore.</claim-text></claim>
</claims><!-- EPO <DP n="25"> -->
<claims id="claims02" lang="de">
<claim id="c-de-01-0001" num="0001">
<claim-text>Vorrichtung zum plastischen Ausdehnen eines röhrenförmigen Flickens in einem Bohrloch, umfassend:
<claim-text>(a) eine Greifeinrichtung, die den röhrenförmigen Flicken in dem Bohrloch an der gewünschten Stelle halten kann, umfassend mindestens ein radial ausziehbares Greifteil (30) zum Greifen der Innenwand des röhrenförmigen Flickens (25) und ein mechanisches Mittel zum radialen Ausziehen des/der Greifteils/Greifteile;</claim-text>
<claim-text>(b) ein drehbares Dehnwerkzeug, das in dem röhrenförmigen Flicken (25) angebracht werden kann, umfassend mehrere Dehnelemente (32), die radial davon ausziehbar und so angepaßt sind, daß sie sich mit der Innenwand des röhrenförmigen Flickens (25) verbinden, und ein mechanisches Mittel (31) zum radialen Ausziehen der Dehnelemente (32); und</claim-text>
<claim-text>(c) mindestens einen elektrischen Motor (29, 34), der dem mechanischen Mittel Antriebskraft zuführen kann, um so das/die Greifteil(e) der Greifeinrichtung radial auszuziehen, dem mechanischen Mittel (31) Antriebskraft zum radialen Ausziehen der Dehnelemente (32) des Dehnwerkzeugs zuzuführen und das Dehnwerkzeug zu drehen.</claim-text></claim-text></claim>
<claim id="c-de-01-0002" num="0002">
<claim-text>Vorrichtung nach Anspruch 1, die an einer Drahtleitung (26) oder einem elektrischen Schlangenrohr aufgehängt ist.</claim-text></claim>
<claim id="c-de-01-0003" num="0003">
<claim-text>Vorrichtung nach den Ansprüchen 1 oder 2, wobei das mechanische Mittel zum radialen Ausziehen des/der Greifteils/Greifteile der Greifeinrichtung und/oder zum radialen Ausziehen der Dehnelemente des Dehnwerkzeugs ein Hebemechanismus oder ein Kegelverdrängungsmechanismus ist.</claim-text></claim>
<claim id="c-de-01-0004" num="0004">
<claim-text>Vorrichtung nach einem der vorhergehenden Ansprüche, wobei die Dehnelemente (32) des Dehnwerkzeugs Rollen oder Kugeln sind.<!-- EPO <DP n="26"> --></claim-text></claim>
<claim id="c-de-01-0005" num="0005">
<claim-text>Vorrichtung nach einem der vorhergehenden Ansprüche, wobei das Dehnwerkzeug mit einem weiteren mechanischen Mittel zum Bewegen der Dehnelemente (32) des Dehnwerkzeugs längs in dem röhrenförmigen Flicken (25) ausgestattet ist und der mindestens eine elektrische Motor (c) (35) auch dem weiteren mechanischen Mittel Antriebskraft zuführt.</claim-text></claim>
<claim id="c-de-01-0006" num="0006">
<claim-text>Vorrichtung nach einem der vorhergehenden Ansprüche, wobei das Dehnwerkzeug mit einem Antriebsmittel (33) zum Drehen des Dehnwerkzeugs ausgestattet ist und der mindestens eine elektrische Motor (c) (34) auch das Antriebsmittel (33) dreht.</claim-text></claim>
<claim id="c-de-01-0007" num="0007">
<claim-text>Vorrichtung nach Anspruch 6, wobei das mechanische Mittel zum radialen Ausziehen des/der Greifteils/Greifteile der Greifeinrichtung, das mechanische Mittel zum radialen Ausziehen der Dehnelemente des Dehnwerkzeugs, das mechanische Mittel zum Bewegen der Dehnelemente des Dehnwerkzeugs längs in dem röhrenförmigen Flicken und das Antriebsmittel zum Drehen des Dehnwerkzeugs mit zweckspezifischen elektrischen Motoren (29, 34, 35) ausgestattet sind.</claim-text></claim>
<claim id="c-de-01-0008" num="0008">
<claim-text>Verfahren zum Abdichten eines Loches in einem Rohr in einem Bohrloch oder zum Abdichten eines offenen Zwischenraumes eines Bohrloches, umfassend:
<claim-text>(A) das Einführen eines röhrenförmigen Flickensystems in das Bohrloch und Plazieren des Systems neben einem Loch in dem Rohr oder neben dem offenen Zwischenraum des Bohrloches, der abgedichtet werden soll, wobei das röhrenförmige Flickensystem einen röhrenförmigen Flicken (25) und eine Vorrichtung zum plastischen Dehnen des röhrenförmigen Flikkens umfaßt, umfassend (a) eine Greifeinrichtung, die den röhrenförmigen Flicken in dem Bohrloch an der gewünschten Stelle halten kann, umfassend mindestens ein radial ausziehbares Greifteil (30) zum Greifen der Innenwand des röhrenförmige Flickens (25), wenn der Flicken eingeführt wird und sich in dem Bohrloch an der gewünschten Stelle befindet, und ein mechanisches Mittel zum radialen Ausziehen des/der Greifteils/Greifteile; (b) ein drehbares Dehnwerkzeug, das in dem röhrenförmigen Flicken angebracht ist, umfassend mehrere Dehnelemente (32), die radial davon ausziehbar und so angepaßt sind, daß sie sich mit der Innenwand des röhrenförmigen Flickens (25) verbinden, und ein mechanisches Mittel (31) zum radialen Ausziehen der Dehnelemente (32); und (c) mindestens einen elektrischen Motor (29, 34), der dem mechanischen Mittel Antriebskraft zuführen kann, um so das/die Greifteil(e) der Greifeinrichtung radial auszuziehen, dem mechanischen Mittel (31) Antriebskraft<!-- EPO <DP n="27"> --> zum radialen Ausziehen der Dehnelemente (32) des Dehnwerkzeugs zuzuführen und das Dehnwerkzeug zu drehen; und</claim-text>
<claim-text>(B) Betätigen des Dehnwerkzeugs, um den röhrenförmigen Flicken so auszudehnen, daß das Loch in dem Rohr oder der offene Teil des Bohrloches abgedichtet wird.</claim-text></claim-text></claim>
<claim id="c-de-01-0009" num="0009">
<claim-text>Verfahren nach Anspruch 8, wobei das mindestens eine radial ausziehbare Greifteil mit der Innenwand des röhrenförmigen Flickens (25) an dessen unterem Ende verbunden ist und darin eingreift.</claim-text></claim>
<claim id="c-de-01-0010" num="0010">
<claim-text>Verfahren nach den Ansprüchen 8 oder 9, wobei ein Teil des Flickens (25) durch Drehen des Dehnwerkzeugs und Betätigen des mechanischen Mittels (31) zum radialen Ausziehen der Dehnelemente (32) des Dehnwerkzeugs plastisch ausgedehnt wird, so daß die Dehnelemente (32) mit der Innenwand des Flickens (25) verbunden sind und der Flicken (25) unter Bildung einer flüssigkeitsdichten, ringförmigen (oder Ring-) Dichtung mit der Wand des Rohres oder mit dem offenen Bohrloch plastisch ausgedehnt wird.</claim-text></claim>
<claim id="c-de-01-0011" num="0011">
<claim-text>Verfahren nach Anspruch 10, wobei das Dehnwerkzeug ein weiteres mechanisches Mittel zum Bewegen der Dehnelemente in Längsrichtung in dem Flicken (25) umfaßt, und das weitere mechanische Mittel unter Bewegung der Dehnelemente des Dehnwerkzeugs längs durch den Flicken elektrisch betätigt wird, wodurch die ringförmige Dichtung ausgezogen oder der gesamte röhrenförmige Flicken plastisch ausgedehnt wird.</claim-text></claim>
<claim id="c-de-01-0012" num="0012">
<claim-text>Verfahren nach Anspruch 10 oder 11, wobei nach dem Bilden der ringförmigen Dichtung die radial ausziehbaren Dehnelemente (32) des Dehnwerkzeugs und das/die radial ausziehbare(n) Greifteil(e) (30) der Greifeinrichtung eingezogen werden und die Vorrichtung zur Bildung einer weiteren ringförmigen Dichtung zu einer neuen Stelle in dem Flicken (25) bewegt wird.</claim-text></claim>
<claim id="c-de-01-0013" num="0013">
<claim-text>Verfahren nach Anspruch 12, wobei mindestens eine ringförmige Dichtung über dem Loch in dem Rohr oder über dem offenen Zwischenraum des Bohrloches und mindestens eine ringförmige Dichtung unter dem Loch in dem Rohr oder unter dem offenen Zwischenraum des Bohrloches gebildet wird.<!-- EPO <DP n="28"> --></claim-text></claim>
<claim id="c-de-01-0014" num="0014">
<claim-text>Verfahren nach einem der Ansprüche 8 bis 13, wobei der Flicken (25) in dem Bohrloch an einer Stelle unter einer Verengung (21), D<sub>1</sub>, eingesetzt wird, und der Flicken ein Metallrohr umfaßt, das in ein unregelmäßig geformtes Rohr mit einem maximalen äußeren Querschnittsausmaß, D<sub>2</sub>, das kleiner ist als D<sub>1</sub>, verformt ist, und wobei, nachdem der Flicken durch die Verengung zu der gewünschten Stelle in dem Bohrloch geführt wurde, das Dehnwerkzeug zum Zurückbilden des Flickens in ein im wesentlichen regelmäßig geformtes Rohr mit einem Außendurchmesser, D<sub>3</sub>, der größer ist als D<sub>1</sub>, und zum plastischen Ausdehnen mindestens eines Teils des zurückgebildeten Rohres auf einen Außendurchmesser, D<sub>4</sub>, betätigt wird, um so eine flüssigkeitsdichte ringförmige Dichtung mit der Wand des Rohres oder der Wand des offenen Bohrloches zu bilden, wobei das Expansionsverhältnis [(D<sub>4</sub> - D<sub>3</sub>) / D<sub>3</sub>] x 100 des zurückgebildeten Rohres im Bereich von 10 bis 30 % liegt.</claim-text></claim>
<claim id="c-de-01-0015" num="0015">
<claim-text>Verfahren nach Anspruch 14, wobei das röhrenförmigen Flickensystem durch das Steigrohr (20) zu der ausgewählten Stelle in dem Bohrloch geführt wird.</claim-text></claim>
<claim id="c-de-01-0016" num="0016">
<claim-text>Verfahren nach Anspruch 14 oder 15, wobei der verformte Flicken ein längs gewelltes Rohr ist.</claim-text></claim>
<claim id="c-de-01-0017" num="0017">
<claim-text>Verfahren nach einem der Ansprüche 8 bis 16, wobei der röhrenförmige Metallflicken mit einem äußeren elastischen Dichtungsteil ausgestattet ist, um so eine bessere Dichtung mit dem Rohr oder mit der Wand des offenen Bohrloches bereitzustellen.</claim-text></claim>
<claim id="c-de-01-0018" num="0018">
<claim-text>Verfahren nach einem der Ansprüche 8 bis 17, wobei der Flicken aus mehreren röhrenförmigen Metallabschnitten gefertigt ist, wobei die Abschnitte des Flickens unter Verwendung verformbarer und gegebenenfalls plastisch ausdehnbarer Gelenke miteinander verbunden sind.</claim-text></claim>
<claim id="c-de-01-0019" num="0019">
<claim-text>Verfahren nach einem der Ansprüche 8 bis 18, wobei mindestens ein Abschnitt des Flikkens im Vergleich zu der Wanddicke, t<sub>2</sub>, der benachbarten Abschnitte des Flickens eine stärkere Wanddicke (13), t<sub>1</sub>, aufweist (d. h. t<sub>1</sub> &gt; t<sub>2</sub>), und wobei das drehbare Dehnwerkzeug zum plastischen Ausdehnen des mindestens einen Abschnittes des Metallrohres mit der stärkeren Wanddicke betätigt wird, um so eine ringförmige Dichtung mit dem Rohr oder dem offenen Bohrloch zu bilden.<!-- EPO <DP n="29"> --></claim-text></claim>
<claim id="c-de-01-0020" num="0020">
<claim-text>Verfahren nach Anspruch 19, wobei der/die Abschnitt(e) des Metallrohres mit der stärkeren Wanddicke (13), t<sub>1</sub>, mit einer ringförmigen Aussparung oder Fuge (17) auf der Außenfläche mit einem darin befindlichen ringförmigen elastischen Dichtungsring (15) ausgestattet ist/sind, und wobei das mechanische Mittel zum radialen Ausziehen der Dehnelemente bewegt wird, um den mindestens einen Abschnitt des Metallrohres mit der stärkeren Wanddikke (13), t<sub>1</sub>, plastisch auszudehnen, wodurch der ringförmige elastische Dichtungsring unter Bildung einer flüssigkeitsdichten ringförmigen Dichtung gegen das Rohr oder gegen die Wand des offenen Bohrloches gedrängt wird.</claim-text></claim>
<claim id="c-de-01-0021" num="0021">
<claim-text>Verfahren nach Anspruch 8 zum Abdichten eines Loches in einem Rohr in einem Bohrloch oder zum Abdichten eines offenen Zwischenraumes eines Bohrloches, umfassend:
<claim-text>(A) das Einführen eines röhrenförmigen Flickens (25) in das Bohrloch und Plazieren des röhrenförmigen Flickens (25) neben dem Loch in dem Rohr oder neben dem offenen Zwischenraum des Bohrloches;</claim-text>
<claim-text>(B) (i) das plastische Ausdehnen eines ersten Teils eines röhrenförmigen Flickens (25) über dem Loch in dem Rohr oder über dem offenen Zwischenraum des Bohrloches in ringförmigem Dichtungseingriff mit dem Rohr oder dem offenen Bohrloch zur Bildung einer ersten ringförmigen Dichtung und (ii) das plastische Ausdehnen eines zweiten Teils des röhrenförmigen Flickens (25) unter dem Loch in dem Rohr oder unter dem offenen Zwischenraum des Bohrloches in ringförmigem Dichtungseingriff mit dem Rohr oder dem offenen Bohrloch zur Bildung einer zweiten ringförmigen Dichtung, wodurch das Loch in dem Rohr oder dem offen Zwischenraum des Bohrloches abgedichtet wird.</claim-text></claim-text></claim>
<claim id="c-de-01-0022" num="0022">
<claim-text>Verfahren nach Anspruch 21, wobei weitere Teile des röhrenförmigen Flickens (25) zur Bildung weiterer ringförmiger Dichtungen in ringförmigem Dichtungseingriff mit dem Rohr oder dem offenen Bohrloch plastisch ausgedehnt werden.</claim-text></claim>
<claim id="c-de-01-0023" num="0023">
<claim-text>Verfahren nach Anspruch 21 oder 22, wobei der röhrenförmige Flicken (25) ein röhrenförmiger Abschnitt eines Sandsiebes ist, daß mindestens einen röhrenförmigen Abschnitt und mindestens einen Siebabschnitt umfaßt.<!-- EPO <DP n="30"> --></claim-text></claim>
<claim id="c-de-01-0024" num="0024">
<claim-text>Verfahren nach Anspruch 21 oder 22, wobei der röhrenförmige Flicken (25) in dem Bohrloch an einer Stelle unter einer Verengung (21), D<sub>1</sub>, eingesetzt wird und der Flicken ein Metallrohr umfaßt, das in ein unregelmäßig geformtes Rohr mit einem maximalen äußeren Querschnittsausmaß, D<sub>2</sub>, das kleiner ist als D<sub>1</sub>, verformt wurde, und wobei, nachdem der Flicken durch die Verengung zu der gewünschten Stelle in dem Bohrloch geführt worden ist, der Flicken in ein im wesentlichen regelmäßig geformtes Rohr mit einem Außendurchmesser, D<sub>3</sub>, der größer ist als D<sub>1</sub>, zurückgebildet wird, und die erste und zweite ringförmige Dichtung durch plastisches Ausdehnen des ersten und zweiten Teils des zurückgebildeten Rohres auf einen Außendurchmesser, D<sub>4</sub>, gebildet werden, wobei das Expansionsverhältnis [(D<sub>4</sub> - D<sub>3</sub>) / D<sub>3</sub>] x 100 des ersten und zweiten Teils des zurückgebildeten Rohres im Bereich von 10 bis 30 % liegt.</claim-text></claim>
<claim id="c-de-01-0025" num="0025">
<claim-text>Verfahren nach einem der vorhergehenden Ansprüche, wobei das erste, zweite und gegebenenfalls weitere Teil(e) des Flickens, das/die unter Bildung der ringförmigen Dichtungen mit dem Rohr oder dem offenen Bohrloch plastisch ausgedehnt wurde(n) im Vergleich zu der Wanddicke, t<sub>2</sub>, der benachbarten Teile des Flickens eine stärkere Wanddicke, t<sub>1</sub>, aufweist/auf weisen.</claim-text></claim>
<claim id="c-de-01-0026" num="0026">
<claim-text>Verfahren nach einem der Ansprüche 21 bis 25, wobei die Ringdichtungen unter Verwendung der Vorrichtung aus einem der Ansprüche 1 bis 7 gebildet werden.</claim-text></claim>
<claim id="c-de-01-0027" num="0027">
<claim-text>Verfahren nach Anspruch 8, wobei der röhrenförmige Flicken ein Linerstrang ist, der Linerstrang so in dem Bohrloch plaziert wird, daß ein oberer Abschnitt des Linerstranges einen unteren Abschnitt eines gestützten oder gefütterten Zwischenraumes des Bohrloches überlappt, und das Dehnwerkzeug so betätigt wird, daß die Dehnelemente einen Teil des oberen Abschnitts des Linerstranges unter Bildung einer ringförmigen Dichtung zwischen dem oberen Abschnitt des Linerstranges und dem unteren Abschnitt des gestützten oder gefütterten Zwischenraumes des Bohrloches plastisch ausdehnen, und gegebenenfalls Betätigen des Dehnwerkzeuges zur Bildung weiterer ringförmiger Dichtungen zwischen dem oberen Abschnitt des Linerstranges und dem unteren Abschnitt des gestützten oder gefütterten Zwischenraumes des Bohrloches.</claim-text></claim>
</claims><!-- EPO <DP n="31"> -->
<claims id="claims03" lang="fr">
<claim id="c-fr-01-0001" num="0001">
<claim-text>Dispositif destiné à expanser de manière plastique une chemise tubulaire (25) dans un puits de forage comprenant :
<claim-text>(a) un ensemble d'accrochage en mesure de maintenir la chemise tubulaire à un emplacement souhaité à l'intérieur du puits de forage comprenant au moins un élément d'accrochage radialement extensible (30) destiné à accrocher la paroi intérieure de la chemise tubulaire (25) et un moyen mécanique destiné à étendre radialement le ou les éléments d'accrochage ;</claim-text>
<claim-text>(b) un outil d'expansion rotatif, pouvant être positionné dans la chemise tubulaire (25), comprenant une pluralité d'éléments d'expansion (32) radialement extensibles depuis celui-ci adaptés pour venir en prise avec la paroi intérieure de la chemise tubulaire (25) et un moyen mécanique (31) destiné à étendre radialement les éléments d'expansion (32) ; et</claim-text>
<claim-text>(c) au moins un moteur électrique (29, 34) destiné à délivrer de la puissance motrice au moyen mécanique destiné à étendre radialement le ou les éléments d'accrochage de l'ensemble d'accrochage, destiné à délivrer de la puissance motrice au moyen mécanique (31) destiné à étendre radialement les éléments d'expansion (32) de l'outil d'expansion, et destiné à permettre la rotation de l'outil d'expansion.</claim-text></claim-text></claim>
<claim id="c-fr-01-0002" num="0002">
<claim-text>Dispositif selon la revendication 1, qui est suspendu depuis un câble (26) ou un tubage enroulé électrique.</claim-text></claim>
<claim id="c-fr-01-0003" num="0003">
<claim-text>Dispositif selon la revendication 1 ou 2, dans lequel le moyen mécanique destiné à étendre radialement<!-- EPO <DP n="32"> --> le ou les éléments d'accrochage de l'ensemble d'accrochage et/ou destiné à étendre radialement les éléments d'expansion de l'outil d'expansion est un mécanisme de vérin ou un mécanisme de déplacement conique.</claim-text></claim>
<claim id="c-fr-01-0004" num="0004">
<claim-text>Dispositif selon l'une quelconque des revendications précédentes, dans lequel les éléments d'expansion (32) de l'outil d'expansion sont des rouleaux ou balles.</claim-text></claim>
<claim id="c-fr-01-0005" num="0005">
<claim-text>Dispositif selon l'une quelconque des revendications précédentes, dans lequel l'outil d'expansion est muni d'un moyen mécanique supplémentaire destiné à déplacer les éléments d'expansion (32) de l'outil d'expansion longitudinalement à l'intérieur de la chemise tubulaire (25) et le au moins un moteur électrique (c) (35) délivre en outre de la puissance motrice au moyen mécanique supplémentaire.</claim-text></claim>
<claim id="c-fr-01-0006" num="0006">
<claim-text>Dispositif selon l'une quelconque des revendications précédentes, dans lequel l'outil d'expansion est muni d'un moyen d'entraînement (33) destiné à faire tourner l'outil d'expansion et le au moins un moteur électrique (c) (34) permet en outre la rotation du moyen d'entraînement (33).</claim-text></claim>
<claim id="c-fr-01-0007" num="0007">
<claim-text>Dispositif selon la revendication 6, dans lequel le moyen mécanique destiné à étendre radialement le ou les éléments d'accrochage de l'ensemble d'accrochage, le moyen mécanique destiné à étendre radialement les éléments d'expansion de l'outil d'expansion, le moyen mécanique destiné à déplacer les éléments d'expansion de l'outil d'expansion longitudinalement à l'intérieur de la chemise tubulaire et le moyen d'entraînement destiné à faire tourner<!-- EPO <DP n="33"> --> l'outil d'expansion sont munis de moteurs électriques dédiés (29, 34, 35).</claim-text></claim>
<claim id="c-fr-01-0008" num="0008">
<claim-text>Procédé de scellement d'un trou dans un tubulaire dans le puits de forage ou de scellement d'un intervalle de trou découvert d'un puits de forage comprenant :
<claim-text>(A) l'introduction d'un système de chemise tubulaire dans un puits de forage et la localisation du système de manière adjacente à un trou dans le tubulaire ou de manière adjacente à l'intervalle de trou découvert du puits de forage que l'on souhaite sceller, le système de chemise tubulaire comprenant une chemise tubulaire (25) et un dispositif destiné à expanser de manière plastique la chemise tubulaire comprenant (a) un ensemble d'accrochage en mesure de maintenir la chemise tubulaire à un emplacement souhaité à l'intérieur du puits de forage comprenant au moins un élément d'accrochage radialement extensible (30) destiné à accrocher la paroi intérieure de la chemise tubulaire (25) tandis que la chemise est en cours d'introduction et positionnée à l'emplacement souhaité dans le puits de forage et un moyen mécanique destiné à étendre radialement le ou les éléments d'accrochage ; (b) un outil d'expansion rotatif, positionné dans la chemise tubulaire, comprenant une pluralité d'éléments d'expansion (32) radialement extensibles depuis celui-ci adaptés pour venir en prise avec la paroi intérieure de la chemise tubulaire (25) et un moyen mécanique (31) destiné à étendre radialement les éléments d'expansion (32) ; et (c) au moins un moteur électrique (29, 34) destiné à délivrer de la puissance motrice au moyen mécanique destiné à étendre radialement le ou les éléments d'accrochage de l'ensemble<!-- EPO <DP n="34"> --> d'accrochage, destiné à délivrer de la puissance motrice au moyen mécanique (31) destiné à étendre radialement les éléments d'expansion (32) de l'outil d'expansion, et destiné à permettre la rotation de l'outil d'expansion ; et</claim-text>
<claim-text>(B) l'actionnement de l'outil d'expansion pour expanser de manière plastique la chemise tubulaire afin de sceller entièrement le trou dans le tubulaire ou de sceller entièrement la partie de trou découvert du puits de forage.</claim-text></claim-text></claim>
<claim id="c-fr-01-0009" num="0009">
<claim-text>Procédé selon la revendication 8, dans lequel le au moins un élément d'accrochage radialement extensible vient en prise avec et accroche la paroi intérieure de la chemise tubulaire (25) au niveau de l'extrémité supérieure de celle-ci.</claim-text></claim>
<claim id="c-fr-01-0010" num="0010">
<claim-text>Procédé selon la revendication 8 ou 9, dans lequel une partie de la chemise (25) est expansée de manière plastique par la rotation de l'outil d'expansion et l'actionnement du moyen mécanique (31) destiné à étendre radialement les éléments d'expansion (32) de l'outil d'expansion de sorte que les éléments d'expansion (32) viennent en prise avec la paroi intérieure de la chemise (25) et la chemise (25) est expansée de manière plastique pour former un joint annulaire (ou bague) étanche au fluide avec la paroi du tubulaire ou avec le trou découvert.</claim-text></claim>
<claim id="c-fr-01-0011" num="0011">
<claim-text>Procédé selon la revendication 10, dans lequel l'outil d'expansion comprend un moyen mécanique supplémentaire destiné à déplacer les éléments d'expansion dans une direction longitudinale à l'intérieur de la chemise (25) et le moyen mécanique supplémentaire est actionné électriquement pour déplacer<!-- EPO <DP n="35"> --> les élément d'expansion de l'outil d'expansion longitudinalement à travers la chemise (25) pour étendre de la sorte le joint annulaire ou expanser de manière plastique toute la chemise tubulaire.</claim-text></claim>
<claim id="c-fr-01-0012" num="0012">
<claim-text>Procédé selon la revendication 10 ou 11, dans lequel après la formation du joint annulaire, les éléments d'expansion extensibles radialement (32) de l'outil d'expansion et le ou les éléments d'accrochage extensibles radialement (30) de l'ensemble d'accrochage sont rétractés et le dispositif est déplacé à un nouvel emplacement dans la chemise (25) pour former un joint annulaire supplémentaire.</claim-text></claim>
<claim id="c-fr-01-0013" num="0013">
<claim-text>Procédé selon la revendication 12, dans lequel au moins un joint annulaire est formé au-dessus du trou dans le tubulaire ou au-dessus de l'intervalle de trou découvert du puits de forage et au moins un joint annulaire est formé au-dessous du trou dans le tubulaire ou au-dessous de l'intervalle du trou découvert du puits de forage.</claim-text></claim>
<claim id="c-fr-01-0014" num="0014">
<claim-text>Procédé selon l'une quelconque des revendications 8 à 13, dans lequel la chemise (25) est déployée dans le puits de forage à un emplacement au-dessous d'une restriction (21), D<sub>1</sub>, et la chemise comprend un tube métallique qui a été déformé en un tube de forme irrégulière ayant une dimension en coupe transversale externe maximum, D<sub>2</sub>, qui est inférieure à D<sub>1</sub> et dans lequel après que la chemise a franchi la restriction jusqu'à l'emplacement souhaité dans le puits de forage, l'outil d'expansion est actionné pour reformer la chemise en un tube de forme sensiblement régulière ayant un diamètre externe, D<sub>3</sub>, qui est supérieur à D<sub>1</sub>, et pour expanser de manière plastique au moins une partie du<!-- EPO <DP n="36"> --> tube reformé jusqu'à un diamètre externe, D<sub>4</sub>, pour former un joint annulaire étanche au fluide avec la paroi du tubulaire ou la paroi du puits de forage à trou découvert dans lequel le ratio d'expansion, [(D<sub>4</sub>-D<sub>3</sub>)/D<sub>3</sub>]x100, du tube reformé se situe dans la fourchette de 10 à 30 %.</claim-text></claim>
<claim id="c-fr-01-0015" num="0015">
<claim-text>Procédé selon la revendication 14, dans lequel le système de chemise tubulaire est introduit jusqu'à l'emplacement sélectionné dans le puits de forage à travers la colonne de production (20).</claim-text></claim>
<claim id="c-fr-01-0016" num="0016">
<claim-text>Procédé selon la revendication 14 ou 15, dans lequel la chemise déformée est un tube à ondulations longitudinales.</claim-text></claim>
<claim id="c-fr-01-0017" num="0017">
<claim-text>Procédé selon l'une quelconque des revendications 8 à 16, dans lequel la chemise métallique tubulaire (25) est munie d'un élément d'étanchéité élastique externe pour apporter une étanchéité améliorée avec le tubulaire ou avec la paroi du puits de forage à trou découvert.</claim-text></claim>
<claim id="c-fr-01-0018" num="0018">
<claim-text>Procédé selon l'une quelconque des revendications 8 à 17, dans lequel la chemise est formée à partir d'une pluralité de sections métallique tubulaires dans lequel les sections de la chemise sont reliées les unes aux autres à l'aide de joints déformables et en option expansibles de manière plastique.</claim-text></claim>
<claim id="c-fr-01-0019" num="0019">
<claim-text>Procédé selon l'une quelconque des revendications 8 à 18, dans lequel au moins une section de la chemise est d'une épaisseur de paroi augmentée (13), t<sub>1</sub>, en comparaison à l'épaisseur de paroi, t<sub>2</sub>, de sections adjacentes de la chemise, (à savoir, t<sub>1</sub>&gt;t<sub>2</sub>) et dans lequel l'outil d'expansion rotatif est actionné pour expanser de manière plastique la au moins une section de<!-- EPO <DP n="37"> --> tube métallique d'épaisseur de paroi augmentée pour former un joint annulaire avec le tubulaire ou le puits de forage à trou découvert.</claim-text></claim>
<claim id="c-fr-01-0020" num="0020">
<claim-text>Procédé selon la revendication 19, dans lequel la ou les sections de tube métallique d'épaisseur de paroi augmentée (13), t<sub>1</sub>, sont munies d'un évidement ou d'une rainure annulaire (17) sur leur surface externe ayant une bague d'étanchéité élastique annulaire (15) située dans celui-ci et dans lequel le moyen mécanique destiné à étendre radialement les éléments d'expansion est actionné pour expanser de manière plastique la au moins une section de tube métallique d'épaisseur de paroi augmentée (13), t<sub>1</sub>, poussant de la sorte la bague d'étanchéité élastique annulaire contre le tubulaire ou contre la paroi du puits de forage à trou découvert pour former un joint annulaire étanche au fluide.</claim-text></claim>
<claim id="c-fr-01-0021" num="0021">
<claim-text>Procédé selon la revendication 8, destiné à sceller un trou dans un tubulaire dans un puits de forage ou à sceller un intervalle de trou découvert d'un puits de forage comprenant :
<claim-text>(A) l'introduction d'une chemise tubulaire (25) dans le puits de forage et la localisation de la chemise tubulaire (25) de manière adjacente au trou dans le tubulaire ou de manière adjacente à l'intervalle de trou découvert du puits de forage ;</claim-text>
<claim-text>(B) (i) l'expansion plastique d'une première partie de la chemise tubulaire (25) au-dessus du trou dans le tubulaire ou au-dessus de l'intervalle de trou découvert du puits de forage en prise d'étanchéité annulaire avec le tubulaire ou le trou découvert pour former un premier joint annulaire et (ii) l'expansion plastique d'une deuxième partie de la chemise tubulaire (25) au-dessous<!-- EPO <DP n="38"> --> du trou dans le tubulaire ou au-dessous de l'intervalle de trou découvert du puits de forage en prise d'étanchéité annulaire avec le tubulaire ou le trou découvert pour former un deuxième joint annulaire scellant de la sorte le trou dans le tubulaire ou l'intervalle de trou découvert du puits de forage.</claim-text></claim-text></claim>
<claim id="c-fr-01-0022" num="0022">
<claim-text>Procédé selon la revendication 21, dans lequel des parties supplémentaires de la chemise tubulaire (25) sont expansées de manière plastique en prise d'étanchéité annulaire avec le tubulaire ou le trou découvert pour former des joints annulaires supplémentaires.</claim-text></claim>
<claim id="c-fr-01-0023" num="0023">
<claim-text>Procédé selon la revendication 21 ou 22 dans lequel la chemise tubulaire (25) est une section tubulaire d'un crible pour sable qui comprend au moins une section tubulaire et au moins une section de crible.</claim-text></claim>
<claim id="c-fr-01-0024" num="0024">
<claim-text>Procédé selon la revendication 21 ou 22, dans lequel la chemise tubulaire (25) est déployée dans le puits de forage à un emplacement au-dessous d'une restriction (21), D<sub>1</sub>, et la chemise comprend un tube métallique qui a été déformé en un tube de forme irrégulière ayant une dimension en coupe transversale externe maximum, D<sub>2</sub>, qui est inférieure à D<sub>1</sub> et dans lequel après que la chemise a franchi la restriction jusqu'à l'emplacement souhaité dans le puits de forage, la chemise est reformée en un tube de forme sensiblement régulière ayant un diamètre externe, D<sub>3</sub>, qui est supérieur à D<sub>1</sub>, et les premier et deuxième joints annulaires sont formés en expansant de manière plastique les première et deuxième parties du tube reformé jusqu'à un diamètre externe, D<sub>4</sub>, dans lequel le ratio d'expansion, [(D<sub>4</sub>-D<sub>3</sub>)/D<sub>3</sub>]x100, des première et deuxième<!-- EPO <DP n="39"> --> parties du tube reformé se situe dans la fourchette de 10 à 30 %.</claim-text></claim>
<claim id="c-fr-01-0025" num="0025">
<claim-text>Procédé selon l'une quelconque des revendications précédentes, dans lequel la première, la deuxième et des parties supplémentaires optionnelles de la chemise qui sont expansées de manière plastique pour former les joints annulaires avec le tubulaire ou le trou découvert sont d'épaisseur de paroi augmentée, t<sub>1</sub>, en comparaison à l'épaisseur de paroi, t<sub>2</sub>, de parties adjacentes de la chemise.</claim-text></claim>
<claim id="c-fr-01-0026" num="0026">
<claim-text>Procédé selon l'une quelconque des revendications 21 à 25, dans lequel les bagues d'étanchéité sont formées à l'aide du dispositif selon l'une quelconque des revendications 1 à 7.</claim-text></claim>
<claim id="c-fr-01-0027" num="0027">
<claim-text>Procédé selon la revendication 8, dans lequel la chemise tubulaire est une colonne perdue, la colonne perdue est située dans le puits de forage de telle sorte qu'une section supérieure de la colonne perdue chevauche une section inférieure d'un intervalle entubé ou cuvelé du puits de forage et l'outil d'expansion est actionné de sorte que les éléments d'expansion expansent de manière plastique une partie de la section supérieure de la colonne perdue pour former un joint annulaire entre la section supérieure de la colonne perdue et la section inférieure de l'intervalle entubé ou cuvelé du puits de forage, et en option, consiste à actionner l'outil d'expansion pour former des joints annulaires supplémentaires entre la section supérieure de la colonne perdue et la section inférieure de l'intervalle entubé ou cuvelé du puits de forage.</claim-text></claim>
</claims><!-- EPO <DP n="40"> -->
<drawings id="draw" lang="en">
<figure id="f0001" num="1,2"><img id="if0001" file="imgf0001.tif" wi="129" he="226" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="41"> -->
<figure id="f0002" num="3"><img id="if0002" file="imgf0002.tif" wi="102" he="153" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="42"> -->
<figure id="f0003" num="4,5"><img id="if0003" file="imgf0003.tif" wi="135" he="216" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="43"> -->
<figure id="f0004" num="6,7"><img id="if0004" file="imgf0004.tif" wi="135" he="216" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="44"> -->
<figure id="f0005" num="8,9"><img id="if0005" file="imgf0005.tif" wi="150" he="225" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="45"> -->
<figure id="f0006" num="10,11"><img id="if0006" file="imgf0006.tif" wi="150" he="225" img-content="drawing" img-format="tif"/></figure>
</drawings>
<ep-reference-list id="ref-list">
<heading id="ref-h0001"><b>REFERENCES CITED IN THE DESCRIPTION</b></heading>
<p id="ref-p0001" num=""><i>This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.</i></p>
<heading id="ref-h0002"><b>Patent documents cited in the description</b></heading>
<p id="ref-p0002" num="">
<ul id="ref-ul0001" list-style="bullet">
<li><patcit id="ref-pcit0001" dnum="US20030015246A"><document-id><country>US</country><doc-number>20030015246</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0001">[0003]</crossref></li>
<li><patcit id="ref-pcit0002" dnum="US3203451A"><document-id><country>US</country><doc-number>3203451</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0002">[0004]</crossref></li>
<li><patcit id="ref-pcit0003" dnum="WO98214444A"><document-id><country>WO</country><doc-number>98214444</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0003">[0005]</crossref></li>
<li><patcit id="ref-pcit0004" dnum="US2002018527A"><document-id><country>US</country><doc-number>2002018527</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0004">[0006]</crossref><crossref idref="pcit0005">[0006]</crossref></li>
<li><patcit id="ref-pcit0005" dnum="GB2359571A"><document-id><country>GB</country><doc-number>2359571</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0006">[0011]</crossref></li>
<li><patcit id="ref-pcit0006" dnum="US6223823B"><document-id><country>US</country><doc-number>6223823</doc-number><kind>B</kind></document-id></patcit><crossref idref="pcit0007">[0016]</crossref></li>
<li><patcit id="ref-pcit0007" dnum="US3489220A"><document-id><country>US</country><doc-number>3489220</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0008">[0030]</crossref></li>
<li><patcit id="ref-pcit0008" dnum="US20010045284A"><document-id><country>US</country><doc-number>20010045284</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0009">[0039]</crossref></li>
</ul></p>
</ep-reference-list>
</ep-patent-document>
