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EP 2 953 845 B1 |
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EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
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04.04.2018 Bulletin 2018/14 |
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Date of filing: 04.02.2014 |
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International Patent Classification (IPC):
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International application number: |
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PCT/EP2014/052138 |
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International publication number: |
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WO 2014/122123 (14.08.2014 Gazette 2014/33) |
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EMERGENCY RELEASE
NOTENTRIEGELUNG
DÉGAGEMENT D'URGENCE
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
| (30) |
Priority: |
05.02.2013 US 201361760671 P 02.07.2013 NO 20130928 16.09.2013 NO 20131242 15.10.2013 NO 20131369
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Date of publication of application: |
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16.12.2015 Bulletin 2015/51 |
| (73) |
Proprietor: MacGregor Norway AS |
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4841 Arendal (NO) |
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Inventors: |
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- ALBRIGTSEN, Rolf
4879 Grimstad (NO)
- HØVIK, Jon
4818 Færvik (NO)
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| (74) |
Representative: Onsagers AS |
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P.O. Box 1813 Vika 0123 Oslo 0123 Oslo (NO) |
| (56) |
References cited: :
WO-A1-2007/113203 US-A- 3 249 121
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GB-A- 900 877
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The invention concerns an arrangement for emergency release of a hose end valve from
its connected position with a connector valve and a method for carrying out the same
emergency release.
[0002] The hose end valve is provided at a hose end of a hose which carries fluid. The fluid
to be transferred by the invention may be any kind of fluid. The invention may be
employed for the transfer of hydrocarbons, including the transfer of LNG, and vaporized
LNG, LPG and other fluid in gaseous and liquid form. In one application the invention
may be used when transferring fluid such as LNG from a floating LNG production facility
(FLNG) to an LNG carrier. The transfer system may then comprise three separate hose
end suspension lines, two for the transfer of LNG to the LNG carrier and one for the
return of vaporized LNG to the FLNG.
[0003] The transfer of fluid in between two structures is a demanding and risky operation.
Especially when the transfer is carried out in the open sea, and when the fluid is
both a cryogenic fluid and a hydrocarbon which is highly flammable and explosive,
the transfer operation is especially risky and special care needs to be taken.
[0004] As mentioned above the fluid may be transferred between structures where both are
located in water. Alternatively the fluid transfer may occur between structures where
one of these is located in water and the other one is a land based structure. The
structures located in water may comprise different kinds of vessels, barges, ships
and platforms or other structures suitable for loading or offloading. The structures
or vessels may be floating, submersible, semisubmersible or resting on the seabed.
Various systems may be employed for holding the structures in position, for instance
mooring arrangements such as a turret system, anchor positioning or a dynamic positioning
system may be used. Prior art solutions for transfer of fluid between structures include
the arrangement of a tandem position, stern offloading or a side by side configuration.
[0005] Various rigid systems for the transfer of fluid in between structures have been proposed
using fixed arms and rigid articulated pipes. The rigid systems are relatively complex
and heavy, and high loads are working on systems when wave motions cause the structures
to move relative to each other.
[0007] As an alternative to the rigid pipe system for transfer of fluid such as LNG, the
use of flexible hoses have been suggested and tried out.
[0008] However, the flexible lines are more cumbersome to handle during connection to a
manifold on a receiving structure, and prior art systems have not presented satisfactory
solutions for the control of the flexible hoses when connection is carried out in
open sea.
[0009] When one of the structures or both, involved in the transfer of fluid is located
in water it is a concern to provide a solution which is capable of handling the movements
occurring due to wave movements. Further, even if the invention should be able to
handle the transfer of all kind of fluid, the wish to also be able to transfer LNG,
challenges the functional features as the transfer of LNG involves high risk operations
due to special concern which needs to be shown when handling cryogenic fluid.
[0010] Due to high risk when transferring LNG and the strict safety restrictions needed
to apply to these systems, one certified solution for transfer of LNG satisfying these
restrictions has been favorable in the market.
[0011] This solution is a rigid loading arm which is positioned on a first structure for
instance a FLNG, for connection to a manifold structure on a second structure for
instance a LNG carrier. The arm is balanced by a counter weight and makes use of rigid
pipes for the transfer of fluid from one structure to the other. The system also employs
a swivel system to be able to compensate for relative movement between the two structures.
The large masses of the system made of rigid pipes and heavy counterweight may in
some situations result in high dynamic forces and considerable impact on the manifold
as a function of the relative movements between the structures. This may occur during
connection to the second structure, and also during use when the system is installed
and the fluid is transferred from one structure to the other. The manifolds on the
LNG carrier are especially vulnerable in these given circumstances. And the resulting
forces working on the system set requirements to the wave height and thus restrictions
to when the loading arm may be used for transfer of fluid.
[0012] If an emergency situation arises it is necessary to pull back the complete rigid
loading arm for disconnection of the pipe transferring the fluid. A need has evoked
within the technical field to provide solutions which utilize safe handling of flexible
hoses together with a reliable emergency return system. It is a critical factor for
the operators to be able to disconnect in emergency situations with a system that
is simple, reliable and easy to use.
[0013] Hence it is an object of the invention to provide a reliable disconnection arrangement
with low masses and easy handling of the suspension lines without exposure to large
forces.
[0014] The invention is defined in the independent claims and embodiments of the invention
are defined in the dependent claims.
[0015] In accordance with the invention a method and an arrangement have been provided with
the basis in providing a solution which is self sufficient and based on passive working
principles capable of simple and easy disconnection without the need of involving
complicated and heavy equipment.
[0016] In accordance with the invention it is provided an arrangement for emergency release
of a hose end valve from its connected position with a connector valve which is connected
to a receiving assembly on a first structure located in water. The structure may be
an LNG carrier, a barge, a fixed structure or some kind of vessel. The hose end valve
is provided at a hose end of a hose which carries fluid especially LNG and/or vaporized
LNG. A hose end suspension line is provided for pulling the hose end with the hose
end valve away from the receiving assembly in the case of emergency. The hose end
suspension line is suspended in a support structure by at least one line guiding element,
for instance sheaves or other line leading and supporting elements. A first end portion
of the hose end suspension line is attached to the hose end valve and a second end
portion of the hose end suspension line is attached to a counter weight.
[0017] The attachment of the hose end suspension line to the counterweight may be provided
in various ways such as passing the hose end suspension line around a sheave or a
pulley in a looped shaped manner and then into attachment with a winch, or by attaching
the hose end suspension line directly to the counterweight in a fixed manner after
the winch.
[0018] Alternatively the hose end suspension line may be attached directly to the counterweight
without a winch involved. The at least one line guiding element is arranged in an
elevated position in the support structure compared to the position of the counterweight
and the position of the hose end and the hose end valve.
[0019] The positions of the counterweight and the hose end with the hose end valve, as well
as the at least one line guiding element in the comparatively elevated position acting
as balancing points provides for a weight balancing relationship. Thus the impact
of the weight provided at the two end portions of the hose end suspension line is
utilized for the controlled lifting or lowering of the hose end with the hose end
valve.
[0020] The arrangement for emergency release and method for emergency release is independent
of the chosen arrangement and method for connection of the hose end to the receiving
assembly.
[0021] However, in one aspect or use of the invention the equipment for connection to the
receiving assembly may be rearranged to the working arrangement of the emergency release.
In this situation the hose end is arranged with the hose end valve and a connector
valve connected to the hose end valve. The hose end valve is to be connected to the
receiving assembly. The hose end suspension line is attached to the hose end valve
and a hose end guiding line may be attached to the connector valve. The hose end with
the hose end valve and the connector valve is initially positioned elevated above
the receiving assembly. The weight of the hose end with the combination of the hose
end valve and connector valve exceeds the counterweight, and when using the arrangement
as described above utilizing the weight balancing principles, the larger weight of
the hose end with the combination of the hose end valve and connector valve causes
the lowering of the hose end with the hose end valve and connector valve into a connection
position with a receiving pipe coupler included in the receiving assembly.
[0022] If an emergency situation arises or it is necessary to release the hose quickly from
the receiving assembly, it is possible to carry out an emergency release by the use
of the same counterweight previously used for installation purposes. In a release
mode, the hose end valve is separated from the connector valve, and by this separation
the weight impact on the hose end is redistributed. The weight of the hose end with
the hose end valve is smaller than the counterweight, and by the use of the weight
balancing principles provided by the suspension of the hose suspension line in the
support structure and the arrangement of the two end portions of the hose end suspension
line as explained above, the counterweight causes the hose end with the hose end valve
to be pulled away from the receiving assembly.
[0023] In accordance with an embodiment of the invention a suspension arrangement connects
the hose end suspension line to the hose end for instance at the hose end valve. The
suspension arrangement is provided to balance the weight of the hose end valve with
the hose end so that the hose end valve is tilted downwards in direction of the receiving
assembly, when the hose end valve is pulled away from the receiving assembly.
[0024] The suspension arrangement may comprise a pulling line, a lifting line and a suspension
bracket. In this aspect, the lifting line is attached to an attachment point of the
hose end suspension line and to a first end portion of the suspension bracket. The
second end portion of the suspension bracket is connected to the hose end. The pulling
line is connected to the second end portion of the suspension bracket and to the attachment
point of the hose end suspension line. The configuration of the suspension arrangement
positions the hose end valve tilted when being pulled away with the hose end suspension
line.
[0025] In accordance with the method as defined in the independent method claim an emergency
release of the hose end with the hose end valve from the connector valve connected
to the receiving assembly comprises: separating the hose end valve from the connector
valve and thereby enabling pulling the hose end suspension line and moving or pulling
the hose end with the hose end valve away from the receiving assembly by the pulling
force contributed by the counterweight.
[0026] When using a suspension arrangement as the one described above; the moving of the
hose end with the hose end valve away from the receiving assembly causes first the
tightening of the lifting line, and thereafter the tightening of the pulling line.
By this arrangement the hose end valve is tilted downwards in direction of the receiving
assembly.
[0027] Thus the dual function of the counterweight fulfills two purposes, installation of
a hose to a receiving assembly and release from the receiving assembly, wherein the
function of the counterweight depends on the working conditions determined by the
separation or combination of the hose end valve and the connector valve as provided
by activating the emergency release and/or the installation procedure respectively.
[0028] The counter weight could be positioned enabling a downward movement of the counter
weight in order to carry out the lifting of the hose end with the hose end valve.
In one embodiment the counter weight is arranged to move in a counter weight guide
path. The counter weight guide path may be provided with an upper end stop and a lower
end stop. The counter weight may be placed in an upper end stop position, or in a
position somewhere in between the upper end stop and the lower end stop, as a result
of the installation of the hose end with the hose end valve and the connector valve
as described above, in a sufficient height above the lower end stop to be able to
carry out the emergency function. Usually, the counterweight may be positioned in
a middle position in between the upper and lower end stop. When separating the hose
end valve from the connector valve, the counter weight moves downward from its position
in the counter weight guide path, thereby pulling the hose end suspension line and
the hose end valve away from the receiving assembly.
[0029] It may usually be necessary to close the hose end valve and the connector valve from
fluid flow prior to separation of the hose end valve from the connector valve.
In one embodiment of the invention plural hoses are included in the arrangement, and
the hoses are provided to be released sequentially or essentially at the same time.
[0030] It should be noted that the support structure may be located on a structure such
as a FLNG and that the receiving assembly is located on a structure such as an LNG
carrier.
[0031] An embodiment of the invention will be described in the following, by way of an example
as shown in the figs, where
Fig 1 shows the hose end connected to a receiving assembly on a structure.
Figs 2a-2b show the procedure for emergency release of the hose end valve from the
connector valve connected to a receiving assembly.
[0032] As shown in fig 1, a hose end 63 with a hose end valve 13 is connected to a connector
valve 14 by a releasable coupling 20. The connector valve 14 is connected to a receiving
coupling pipe 15 of a manifold 16 included in a receiving assembly 90 arranged on
board a structure for instance a LNG- carrier 80. As shown in fig 1, a hose end suspension
line 27 is connected to the hose end valve 13 and a hose end guiding line 35 is connected
to the connector valve 14. In one embodiment of the invention the hose end guiding
line 35 is connected to a support structure 200 by line guiding means 38, 34 such
as sheaves, and is provided with lifting and lowering means such as a winch 33 for
paying out and retrieving the hose end guiding line 35.
[0033] The hose end suspension line 27 is connected to the hose end valve 13 by a suspension
arrangement 120. The suspension arrangement 120 comprises a pulling line 116 and a
lifting line 117. The lifting line 117 is connected to an attachment point 121 of
the hose end suspension line 27 and to a first end portion of a suspension bracket
118. The second end portion of the suspension bracket 118 is connected to the hose
end 63 and in the embodiment the suspension bracket 118 is shown attached to the hose
end valve 13. The suspension bracket 118 is composed of linear and angular portions
in order to obtain a correct tilting of the hose valve when lifting the hose end 63
away from the receiving assembly. The pulling line 116 is connected to the second
end portion of the suspension bracket 118 and to the attachment point 121. In the
embodiment shown in fig 1, the lifting line 117 is provided as a separate line, but
the lifting line 117 may alternatively be provided as a portion of the hose end suspension
line. The pulling line 116 is longer than the lifting line 117.
[0034] As shown in fig 1 the lifting line 117 is tightened in preparation for starting the
emergency release.
[0035] The support structure 200 comprises a vertical structure 1 and an arm 106 which is
oriented essentially in a direction transverse to the vertical structure 1. The support
structure 200 may be located on board a FLNG 70 as shown in the figs. The hose end
suspension line 27 is shown connected to the support structure 200 by line guiding
means 28, 31 such as sheaves, and is provided with lifting and lowering means such
as a counter weight 22 which is arranged movable in the counterweight guiding path
110. The hose end suspension line runs through a sheave 23 and into engagement with
a winch 24. The counterweight guiding path 110 has upper end stops 25 and lower end
stops 26, and in fig 1, the counterweight 22 is shown in a position below and close
to the upper end stops 25.
[0036] The hose end suspension line 27 in fig 1 is also shown arranged with a winch 24 for
paying out and retrieving the hose end suspension line 27. The hose end suspension
line 27 runs through a sheave 23 in a looped shape manner and into engagement with
a winch 24. Even if the sheave 23 here is shown as a single movable pulley it is also
possible to provide solutions of various ways of rigging with several pulleys mounted
on the fixed and moving axles.
[0037] The arrangement of the hose end suspension line 27 being supported by the elevated
line guiding means 28, 31 and the hose end suspension line 27 having a first end portion
attached to the hose end valve 13 and a second end portion arranged with a counterweight
22 provides a weight balancing relationship. Under given working conditions, such
as an emergency situation when the hose end valve 13 is separated from the hose connector
14, the pulling force contributed by the counterweight to the hose end line 27, is
effectuated into movement of the hose end 63 with the hose end valve 13, as will be
explained more detailed in the following. The positioning of the counterweight 22
may be a result of an installation procedure, where the hose end 63 with the hose
end valve 13 and the connector valve 14 is lowered from an elevated position and into
the installed position as shown in fig 1. During this installment procedure, the weight
of the combination of the hose end valve 13 and the connector valve 14 exceeds the
weight of the counterweight, thereby lowering the hose end suspension line 27 and
guiding the hose end 63 with the hose end valve 13 and the connector valve 14 along
the hose end guide line 35 into the installation position. As a result of this installation
procedure the counterweight 22 is brought to a position at the upper end stop, and
when the installation is completed, the counterweight 22 is lowered until reaching
the position between the upper end stop 25 and lower end stop 26, for instance a middle
position, as the one shown in fig 1.
[0038] The emergency release to be described in the following may occur with the counterweight
in a position at or below the upper end stop 25 and a distance away from the lower
end stop 26, such as the middle position as shown in fig 1. It should be noted that
also other positions of the counterweight 22 than the one shown in fig 1, is possible
when initiating the emergency release. For instance it may be necessary to activate
the emergency release during the lowering of the counterweight 22 from upper end stop
position 25 to the middle position, as the one shown in fig 1. Or in a situation where
the transfer of fluid is completed and the counterweight is above the middle position
moving upwards in the direction of the upper end stop 25.
[0039] Fig 2a and 2b show the procedure for retrieving a hose end 63 with the hose end valve
13 by the use of the counterweight 22. This is a procedure especially suitable for
an emergency situation when the hose end 63 with the hose end valve 13 needs to be
evacuated quickly and in this circumstance the use of a counterweight offers a simple
and reliable method.
[0040] In preparation for emergency release the valve devices included in hose end valve
13 and connector valve 14 should be closed for fluid flow. And also the hose end guiding
line 35 is disconnected from the receiving assembly 90 and pulled back as illustrated
by the arrow B. When the fluid flow is closed off, the releasable coupling 20 separates
the hose end valve 13 from the connector valve 14 as shown in fig 2a, thereby preparing
for pulling the hose end 63 with the hose end valve 13 away from the connector valve
14. To make sure that the hose end valve 13 and the connector valve 14 is separated
correctly and also kept separated during the emergency release, it may be necessary
to provide either the connector valve 14, the hose end valve 13 or both valves 13,
14 with a distance and guiding arrangement. The distance arrangement may be provided
by equipping the valve flanges with contact point's extremities at a sufficient distance
to the sealing area ensuring axial distance between sealing surfaces when the angle
between the two valve units is increased.
[0041] The guiding arrangement may be provided with a bracket 30 which guides the hose end
valve 13 away from the connector valve 14 in a predetermined manner when lifting the
hose end valve 13 away from the connector valve 14 by the use of the hose end suspension
line 27. As the skilled person will realize also other devices than the shown bracket
30 may be used to ensure a correct separation of the hose end valve 13 from the connector
valve 14. For instance a distance element may be attached to the hose end valve 13.
One end of the distance element may fit into a recess provided at the connector valve
14. With the end of the distance element arranged to follow the outline of the recess
during lifting by the hose end suspension line 27, a controlled separation of the
hose end valve 13 from the connector valve 14 is obtained. Another possible alternative
is to combine the bracket 30 with the distance element and the recess.
[0042] With the hose end valve 13 separated from the connector valve 14, the counterweight
which is larger than the combined weight of the hose end 63 and the hose end valve
13, is allowed to start its downward movement as illustrated with arrow A in the counter
weight guide path 110 as shown in fig 2.
[0043] The moving of the counterweight 22 downwards in the counterweight guiding path 110
away from the upper end stops 25, see fig 2b, causes the upward pulling of the hose
end suspension line 27 which is connected to the hose end valve 13. The upward movement
of the hose end suspension line 27 is illustrated by arrow B. Consequently, the continued
downward movement of the counterweight 22 away from the upper end stop 25, causes
the lifting of the hose end 63 with the hose end valve 13 away from the receiving
assembly 90 and the LNG-carrier 80, see fig 2b.
[0044] When pulling the hose end suspension line 27 away from the receiving assembly 90,
both the lifting line 117 and the pulling line 116 is tightened as shown in fig 2a.
The triangular configuration of the suspension arrangement 120 then tilts the hose
end valve 13 downward and balances the hose end valve 13 with the hose end 63. As
seen in fig 2b, where the continued pulling of the hose end suspension line 27 is
carried out in a more vertical direction than the one shown in fig 2a, the lifting
line 117 is held tightened whereas the pulling line 116 is slackened, still with the
hose end valve 13 tilted downward and the hose end 63 in balance with the hose end
valve.
[0045] In the case where plural hoses are connected to the receiving assembly 90, the arrangement
with respective counterweights connected to each hose ensures that the disconnection
of each hose end with the hose end valve may be controlled individually. The disconnection
procedure for the individual hose end with the hose end valve will follow the procedure
as described above and the disconnection of each hose end with hose end valve may
be carried out at the same time or sequentially.
1. Arrangement comprising a hose end (63), a hose end valve (13), a suspension line (27),
a support structure (200), at least one line guiding element (31, 28), a counterweight
(22) and a receiving assembly (90), wherein the arrangement is prepared for emergency
release of the hose end valve (13) from its connected position with a connector valve
(14) which is connected to the receiving assembly (90) arranged on a first structure
(80) located in water, wherein the hose end valve (13) is provided at the hose end
(63) of a hose which carries fluid especially LNG and/or vaporized LNG, and a first
end portion of the hose end suspension line (27) is attached to the hose end valve
(13), and is suspended in a support structure (200) by the at least one line guiding
element (31,28),
characterized in that a second end portion of the hose end suspension line (27) is attached to the counterweight
(22), wherein the at least one line guiding element (31, 28) is arranged in an elevated
position compared to the position of the hose end (63) with the hose end valve (13)
and the position of the counterweight (22), thereby providing for a weight balancing
relationship and in an emergency release mode the hose end valve (13) is separated
from the connector valve (14), and as the weight of the hose end (63) and the hose
end valve (13) without the connector valve (14) is smaller than the counterweight
(22), the counterweight (22) causes the hose end (63) with the hose end valve (13)
to be pulled away from the receiving assembly (90).
2. Arrangement for emergency release in accordance with claim 1,
characterized that a suspension arrangement (120) connecting the hose end suspension line (27) to the
hose end (63), is provided to balance the weight of the hose end valve (13) with the
hose end (63) so that the hose end valve (13) is tilted downwards in direction of
the receiving assembly (90), when the hose end valve (13) is pulled away from the
receiving assembly (90).
3. Arrangement for emergency release in accordance with claim 1 or 2,
characterized in that the suspension arrangement (120) comprises a pulling line (116), a lifting line (117),
and a suspension bracket (118), wherein the lifting line (117) is attached to an attachment
point (121) of the hose end suspension line (27) and to a first end portion of the
suspension bracket, further the second end portion of the suspension bracket (118)
is connected to the hose end (63), and the pulling line (116) is connected to the
second end portion of the suspension bracket (118) and to the attachment point (121)
of the hose end suspension line (27), wherein the configuration of the suspension
arrangement (102) positions the hose end valve (13) tilted when being pulled away
with the hose end suspension line (27).
4. Arrangement for emergency release in accordance with one of the claims 1-3,
characterized in that the counterweight (22) is arranged to move in a counterweight guide path (110).
5. Arrangement for emergency release, in accordance with claim 4,
characterized in that the counterweight guide path (110) has upper end stop (25) and lower end stop (26)
and the counterweight (22) is positioned at or below the upper end stop (25) and a
distance away from the lower end stop (26), when separating the hose end valve (13)
from the connector valve (14).
6. Arrangement for emergency release in accordance with one of the claims 1-5,
characterized in that plural hoses are included in the arrangement, and the hoses are provided to be released
sequentially or essentially at the same time.
7. Arrangement for emergency release in accordance with one of the claims 1-6,
characterized in that providing either the connector valve 14, the hose end valve 13 or both valves 13,
14 with a distance and guiding arrangement.
8. Arrangement for emergency release in accordance with claim 7,
characterized in that the guiding arrangement is provided with a bracket (30) which guides the hose end
valve (13) away from the connector valve (14) in a predetermined manner when lifting
the hose end valve (13) away from the connector valve (14) by the use of the hose
end suspension line (27).
9. Arrangement for emergency release in accordance with one with one of the claims 1-8,
characterized in that a distance element is attached to the hose end valve (13), wherein one end of the
distance element is arranged to fit into a recess provided at the connector valve
(14).
10. Arrangement for emergency release in accordance with claim 9,
characterized in that the end of the distance element is arranged to follow the outline of the recess during
lifting by the hose end suspension line (27) for a controlled separation of the hose
end valve (13) from the connector valve (14).
11. Arrangement for emergency release in accordance with claim 9 or 10,
characterized in tha the distance element is arranged ensuring axial distance between the sealing surfaces
of the hose end valve (13) and the connector valve (14) when the angle between the
hose end valve (13) and the connector valve (14) is increased.
12. Method for emergency release of a hose end valve (13) from its connected position
with a connector valve (14) connected to a receiving assembly (90) arranged on a first
structure (80) located in water, wherein the hose end valve (13) is provided at a
hose end (63) of a hose which carries fluid especially LNG and/or vaporized LNG, and
the hose end valve (13) is attached to a first end portion of a hose end suspension
line (27) which is suspended in a support structure (200) by at least one line guiding
element (31, 28),
characterized in that
a second end portion of the hose end suspension line (27) is attached to a counterweight
(22), wherein the at least one line guiding element (31, 28) is arranged in an elevated
position compared to the position of the hose end (63) with the hose end valve (13)
and the position of the counterweight (22) thereby providing for a weight balancing
relationship wherein the weight of the hose end (63) with the hose end valve (13)
is smaller than the counterweight (22), wherein the method comprises the following
steps,
- separating the hose end valve (13) from the connector valve (14) and thereby enabling
- pulling the hose end suspension line (27) and moving the hose end (63) with the
hose end valve (13) away from the receiving assembly (90) by the pulling force contributed
by the counter weight.
13. Method for emergency release in accordance with claim 12,
characterized in that a suspension arrangement (120) connects the hose end suspension line (27) to the
hose end valve (13) and the suspension arrangement (120) comprises a lifting line
(117), an pulling line (116) and a suspension bracket (118), the lifting line (117)
being attached to an attachment point (121) of the hose end suspension line (27) and
to a first end portion of the suspension bracket (118), further the second end portion
of the suspension bracket (118) is connected to the hose end valve (13) and the pulling
line (116) is connected to the second end portion of the suspension bracket (118)
and to the attachment point (121) of the hose end suspension line (27), wherein when
pulling the hose end suspension line (27) and moving the hose end (63) with the hose
end valve (13) away from the receiving assembly (90), the pulling of the hose end
suspension line (27) first causes the tightening of the lifting line (117), thereafter
the tightening of the pulling line (116) resulting in a positioning of the hose end
valve (13) tilted downwards in direction of the receiving assembly (90).
14. Method for emergency release in accordance with one of the claims 12-13 ,
characterized in that plural hoses are included in the receiving assembly (90), and releasing the hoses
sequentially or essentially at the same time.
1. Anordnung, umfassend ein Schlauchende (63), ein Schlauchendeventil (13), eine Aufhängeleine
(27), eine Haltestruktur (200), wenigstens ein Leinenführungselement (31, 28), ein
Gegengewicht (22) und eine Aufnahmeeinheit (90), wobei die Anordnung für eine Notentkopplung
des Schlauchendeventils (13) von seiner mit einem Verbindungsventil (14) verbundenen
Position vorbereitet ist, das mit der Aufnahmeeinheit (90) verbunden ist, die an einer
ersten Struktur (80) angeordnet ist, die sich im Wasser befindet, wobei das Schlauchendeventil
(13) am Schlauchende (63) eines Schlauchs vorgesehen ist, der Fluid, insbesondere
Flüssigerdgas und/oder verdampftes Flüssigerdgas, trägt, und wobei ein erster Endabschnitt
der Schlauchende-Aufhängeleine (27) an dem Schlauchendeventil (13) befestigt ist und
durch das wenigstens eine Leinenführungselement (31, 28) in einer Haltestruktur (200)
aufgehängt ist,
dadurch gekennzeichnet, dass ein zweiter Endabschnitt der Schlauchende-Aufhängeleine (27) an dem Gegengewicht
(22) befestigt ist, wobei das wenigstens eine Leinenführungselement (31, 28) in einer
im Vergleich zu der Position des Schlauchendes (63) mit dem Schlauchendeventil (13)
und der Position des Gegengewichts (22) erhöhten Position angeordnet ist, wodurch
eine gewichtsausgleichende Beziehung geschaffen wird, und wobei in einem Notentkopplungsmodus
das Schlauchendeventil (13) von dem Verbindungsventil (14) getrennt wird, und wobei
das Gegengewicht (22) bewirkt, dass das Schlauchende (63) mit dem Schlauchendeventil
(13) von der Aufnahmeeinheit (90) weggezogen wird, da das Gewicht des Schlauchendes
(63) und des Schlauchendeventils (13) ohne das Verbindungsventil (14) geringer ist
als das Gegengewicht (22).
2. Anordnung zur Notentkopplung nach Anspruch 1,
dadurch gekennzeichnet, dass eine Aufhängeanordnung (120), welche die Schlauchende-Aufhängeleine (27) mit dem
Schlauchende (63) verbindet, vorgesehen ist, um das Gewicht des Schlauchendeventils
(13) mit dem Schlauchende (63) auszugleichen, so dass das Schlauchendeventil (13)
in Richtung auf die Aufnahmeeinheit (90) nach unten gekippt wird, wenn das Schlauchendeventil
(13) von der Aufnahmeeinheit (90) weggezogen wird.
3. Anordnung zur Notentkopplung nach Anspruch 1 oder 2,
dadurch gekennzeichnet, dass die Aufhängeanordnung (120) eine Zugleine (116), eine Hubleine (117) und einen Aufhängebügel
(118) umfasst, wobei die Hubleine (117) an einem Befestigungspunkt (121) der Schlauchende-Aufhängeleine
(27) und an einem ersten Endabschnitt des Aufhängebügels befestigt ist, wobei ferner
der zweite Endabschnitt des Aufhängebügels (118) mit dem Schlauchende (63) verbunden
ist und die Zugleine (116) mit dem zweiten Endabschnitt des Aufhängebügels (118) und
dem Befestigungspunkt (121) der Schlauchende-Aufhängeleine (27) verbunden ist, wobei
die Ausgestaltung der Aufhängeanordnung (102) das Schlauchendeventil (13) gekippt
positioniert, wenn es mit der Schlauchende-Aufhängeleine (27) weggezogen wird.
4. Anordnung zur Notentkopplung nach einem der Ansprüche 1 bis 3,
dadurch gekennzeichnet, dass das Gegengewicht (22) derart angeordnet ist, dass es sich in einem Gegengewichtsführungsweg
(110) bewegt.
5. Anordnung zur Notentkopplung nach Anspruch 4,
dadurch gekennzeichnet, dass der Gegengewichtsführungsweg (110) einen oberen Endanschlag (25) und einen unteren
Endanschlag (26) aufweist und das Gegengewicht (22) an oder unter dem oberen Endanschlag
(25) und eine Strecke von dem unteren Endanschlag (26) beabstandet positioniert wird,
wenn das Schlauchendeventil (13) vom Verbindungsventil (14) getrennt wird.
6. Anordnung zur Notentkopplung nach einem der Ansprüche 1 bis 5,
dadurch gekennzeichnet, dass mehrere Schläuche in der Anordnung enthalten sind und die Schläuche dafür vorgesehen
sind, nacheinander oder im Wesentlichen gleichzeitig entkoppelt zu werden.
7. Anordnung zur Notentkopplung nach einem der Ansprüche 1 bis 6,
dadurch gekennzeichnet, dass entweder das Verbindungsventil 14, das Schlauchendeventil 13 oder beide Ventile 13,
14 mit einer Abstands- und Führungsanordnung versehen sind.
8. Anordnung zur Notentkopplung nach Anspruch 7,
dadurch gekennzeichnet, dass die Führungsanordnung mit einem Bügel (30) versehen ist, der das Schlauchendeventil
(13) auf eine vorbestimmte Weise von dem Verbindungsventil (14) wegführt, wenn das
Schlauchendeventil (13) mittels der Schlauchende-Aufhängeleine (27) vom Verbindungsventil
(14) weggehoben wird.
9. Anordnung zur Notentkopplung nach einem der Ansprüche 1 bis 8,
dadurch gekennzeichnet, dass ein Abstandselement an dem Schlauchendeventil (13) befestigt ist, wobei ein Ende
des Abstandselements derart angeordnet ist, dass es in eine Vertiefung passt, die
am Verbindungsventil (14) vorgesehen ist.
10. Anordnung zur Notentkopplung nach Anspruch 9,
dadurch gekennzeichnet, dass das Ende des Abstandselements derart angeordnet ist, dass es für eine kontrollierte
Trennung des Schlauchendeventils (13) vom Verbindungsventil (14) während des Anhebens
durch die Schlauchende-Aufhängeleine (27) der Kontur der Vertiefung folgt.
11. Anordnung zur Notentkopplung nach Anspruch 9 oder 10,
dadurch gekennzeichnet, dass das Abstandselement derart angeordnet ist, dass es einen axialen Abstand zwischen
den Dichtflächen des Schlauchendeventils (13) und des Verbindungsventils (14) gewährleistet,
wenn der Winkel zwischen dem Schlauchendeventil (13) und dem Verbindungsventil (14)
zunimmt.
12. Verfahren zur Notentkopplung eines Schlauchendeventils (13) von seiner mit einem Verbindungsventil
(14) verbundenen Position, das mit einer Aufnahmeeinheit (90) verbunden ist, die an
einer ersten Struktur (80) angeordnet ist, die sich im Wasser befindet, wobei das
Schlauchendeventil (13) an einem Schlauchende (63) eines Schlauchs vorgesehen ist,
der Fluid, insbesondere Flüssigerdgas und/oder verdampftes Flüssigerdgas, trägt, und
wobei das Schlauchendeventil (13) an einem ersten Endabschnitt einer Schlauchende-Aufhängeleine
(27) befestigt ist, die durch wenigstens ein Leinenführungselement (31, 28) in einer
Haltestruktur (200) aufgehängt ist,
dadurch gekennzeichnet, dass ein zweiter Endabschnitt der Schlauchende-Aufhängeleine (27) an einem Gegengewicht
(22) befestigt ist, wobei das wenigstens eine Leinenführungselement (31, 28) in einer
im Vergleich zu der Position des Schlauchendes (63) mit dem Schlauchendeventil (13)
und der Position des Gegengewichts (22) erhöhten Position angeordnet ist, wodurch
eine gewichtsausgleichende Beziehung geschaffen wird, wobei das Gewicht des Schlauchendes
(63) mit dem Schlauchendeventil (13) geringer ist als das Gegengewicht (22), wobei
das Verfahren die folgenden Schritte umfasst:
- Trennen des Schlauchendeventils (13) vom Verbindungsventil (14), wodurch Folgendes
ermöglicht wird:
- Ziehen der Schlauchende-Aufhängeleine (27) und Bewegen des Schlauchendes (63) mit
dem Schlauchendeventil (13) weg von der Aufnahmeeinheit (90) durch die vom Gegengewicht
beigetragene Zugkraft.
13. Verfahren zur Notentkopplung nach Anspruch 12,
dadurch gekennzeichnet, dass eine Aufhängeanordnung (120) die Schlauchende-Aufhängeleine (27) mit dem Schlauchendeventil
(13) verbindet und die Aufhängeanordnung (120) eine Hubleine (117), eine Zugleine
(116) und einen Aufhängebügel (118) umfasst, wobei die Hubleine (117) an einem Befestigungspunkt
(121) der Schlauchende-Aufhängeleine (27) und an einem ersten Endabschnitt des Aufhängebügels
(118) befestigt ist, wobei ferner der zweite Endabschnitt des Aufhängebügels (118)
mit dem Schlauchendeventil (13) verbunden ist und die Zugleine (116) mit dem zweiten
Endabschnitt des Aufhängebügels (118) und mit dem Befestigungspunkt (121) der Schlauchende-Aufhängeleine
(27) verbunden ist, wobei, wenn die Schlauchende-Aufhängeleine (27) gezogen wird und
das Schlauchende (63) mit dem Schlauchendeventil (13) von der Aufnahmeeinheit (90)
wegbewegt wird, das Ziehen der Schlauchende-Aufhängeleine (27) zuerst das Straffen
der Hubleine (117) bewirkt, wobei anschließend das Straffen der Zugleine (116) zu
einer Positionierung des Schlauchendeventils (13) führt, die in Richtung auf die Aufnahmeeinheit
(90) nach unten gekippt ist.
14. Verfahren zur Notentkopplung nach einem der Ansprüche 12 bis 13,
dadurch gekennzeichnet, dass mehrere Schläuche in der Aufnahmeeinheit (90) enthalten sind und dass die Schläuche
nacheinander oder im Wesentlichen gleichzeitig entkoppelt werden.
1. Agencement comprenant une extrémité de tuyau flexible (63), une valve d'extrémité
de tuyau flexible (13), une ligne de suspension (27), une structure de support (200),
au moins un élément de guidage de ligne (31, 28), un contrepoids (22) et un ensemble
de réception (90), dans lequel l'agencement est préparé pour le dégagement d'urgence
de la valve d'extrémité de tuyau flexible (13) de sa position raccordée avec une valve
de connecteur (14) qui est raccordée à l'ensemble de réception (90) agencé sur une
première structure (80) positionnée dans l'eau, dans lequel la valve d'extrémité de
tuyau flexible (13) est prévue au niveau de l'extrémité de tuyau flexible (63) d'un
tuyau flexible qui transporte du fluide, en particulier du gaz naturel liquéfié (GNL)
et/ou du GNL vaporisé, et une première partie d'extrémité de la ligne de suspension
d'extrémité de tuyau flexible (27) est fixée sur la valve d'extrémité de tuyau flexible
(13), et est suspendue dans une structure de support (200) par le au moins un élément
de guidage de ligne (31, 28),
caractérisé en ce qu'une seconde partie d'extrémité de la ligne de suspension d'extrémité de tuyau flexible
(27) est fixée au contrepoids (22), dans lequel le au moins un élément de guidage
de ligne (31, 28) est agencé dans une position élevée par rapport à la position de
l'extrémité de tuyau flexible (63) avec la valve d'extrémité de tuyau flexible (13)
et à la position du contrepoids (22), fournissant ainsi une relation d'équilibrage
de poids et dans un mode de dégagement d'urgence, la valve d'extrémité de tuyau flexible
(13) est séparée de la valve de connecteur (14), et étant donné que le poids de l'extrémité
de tuyau flexible (63) et de la valve d'extrémité de tuyau flexible (13) sans la valve
de connecteur (14) est inférieur au contrepoids (22), le contrepoids (22) amène l'extrémité
de tuyau flexible (63) avec la valve d'extrémité de tuyau flexible (13) à être retirée
de l'ensemble de réception (90).
2. Agencement pour dégagement d'urgence selon la revendication 1,
caractérisé en ce qu'un agencement de suspension (120) raccordant la ligne de suspension d'extrémité de
tuyau flexible (27) à l'extrémité de tuyau flexible (63), est prévu pour équilibrer
le poids de la valve d'extrémité de tuyau flexible (13) avec l'extrémité de tuyau
flexible (63) de sorte que la valve d'extrémité de tuyau flexible (13) est inclinée
vers le bas dans la direction de l'ensemble de réception (90), lorsque la valve d'extrémité
de tuyau flexible (13) est retirée de l'ensemble de réception (90).
3. Agencement pour dégagement d'urgence selon la revendication 1 ou 2,
caractérisé en ce que l'agencement de suspension (120) comprend une ligne de traction (116), une ligne
de levage (117), et un support de suspension (118), dans lequel la ligne de levage
(117) est fixée à un point de fixation (121) de la ligne de suspension d'extrémité
de tuyau flexible (27) et à une première partie d'extrémité du support de suspension,
en outre la seconde partie d'extrémité du support de suspension (118) est raccordée
à l'extrémité de tuyau flexible (63), et la ligne de traction (116) est raccordée
à la seconde partie d'extrémité du support de suspension (118) et au point de fixation
(121) de la ligne de suspension d'extrémité de tuyau flexible (27), dans lequel la
configuration de l'agencement de suspension (102) positionne la valve d'extrémité
de tuyau flexible (13) inclinée lorsqu'elle est retirée avec la ligne de suspension
d'extrémité de tuyau flexible (27).
4. Agencement pour dégagement d'urgence selon l'une des revendications 1 à 3, caractérisé en ce que le contrepoids (22) est agencé pour se déplacer dans une trajectoire de guidage de
contrepoids (110).
5. Agencement pour dégagement d'urgence selon la revendication 4,
caractérisé en ce que la trajectoire de guidage de contrepoids (110) a une butée d'extrémité supérieure
(25) et une butée d'extrémité inférieure (26) et le contrepoids (22) est positionné
au niveau de ou au-dessous de la butée d'extrémité supérieure (25) et à une distance
de la butée d'extrémité inférieure (26) lors de la séparation de la valve d'extrémité
de tuyau flexible (13) de la valve de connecteur (14).
6. Agencement pour dégagement d'urgence selon l'une des revendications 1 à 5, caractérisé en ce que plusieurs tuyaux flexibles sont inclus dans l'agencement et les tuyaux flexibles
sont prévus pour être dégagés de manière séquentielle ou essentiellement en même temps.
7. Agencement pour dégagement d'urgence selon l'une des revendications 1 à 6, caractérisé en ce que l'on fournit soit à la valve de connecteur (14), à la valve d'extrémité de tuyau
flexible (13) ou aux deux valves (13, 14) un agencement d'espacement et de guidage.
8. Agencement pour dégagement d'urgence selon la revendication 7, caractérisé en ce que l'agencement de guidage est prévu avec un support (30) qui guide la valve d'extrémité
de tuyau flexible (13) à distance de la valve de connecteur (14) d'une manière prédéterminée
lors du levage de la valve d'extrémité de tuyau flexible (13) à distance de la valve
de connecteur (14) à l'aide de la ligne de suspension d'extrémité de tuyau flexible
(27).
9. Agencement pour dégagement d'urgence selon l'une des revendications 1 à 8,
caractérisé en ce qu'un élément d'espacement est fixé à la valve d'extrémité de tuyau flexible (13), dans
lequel une extrémité de l'élément d'espacement est agencée pour se monter dans un
évidement prévu au niveau de la valve de connecteur (14).
10. Agencement pour dégagement d'urgence selon la revendication 9, caractérisé en ce que l'extrémité de l'élément d'espacement est agencée pour suivre le contour de l'évidement
pendant le levage par la ligne de suspension d'extrémité de tuyau flexible (27) pour
une séparation contrôlée de la valve d'extrémité de tuyau flexible (13) de la valve
de connecteur (14).
11. Agencement pour dégagement d'urgence selon la revendication 9 ou 10, caractérisé en ce qu'un élément d'espacement est agencé en garantissant la distance axiale entre les surfaces
d'étanchéité de la valve d'extrémité de tuyau flexible (13) et la valve de connecteur
(14) lorsque l'angle entre la valve d'extrémité de tuyau flexible (13) et la valve
de connecteur (14) est augmenté.
12. Procédé pour le dégagement d'urgence d'une valve d'extrémité de tuyau flexible (13)
de sa position raccordée avec une valve de connecteur (14) raccordée à un ensemble
de réception (90) agencé sur une première structure (80) positionnée dans l'eau, dans
lequel la valve d'extrémité de tuyau flexible (13) est prévue au niveau d'une extrémité
de tuyau flexible (63) d'un tuyau flexible qui transporte du fluide en particulier
du GNL et/ou du GNL vaporisé, et la valve d'extrémité de tuyau flexible (13) est fixée
à une première partie d'extrémité d'une ligne de suspension d'extrémité de tuyau flexible
(27) qui est suspendue dans une structure de support (200) par au moins un élément
de guidage de ligne (31, 28),
caractérisé en ce que :
une seconde partie d'extrémité de la ligne de suspension d'extrémité de tuyau flexible
(27) est fixée sur un contrepoids (22), dans lequel le au moins un élément de guidage
de ligne (31, 28) est agencé dans une position élevée par rapport à la position de
l'extrémité de tuyau flexible (63) avec la valve d'extrémité de tuyau flexible (13)
et à la position du contrepoids (22), fournissant ainsi une relation d'équilibrage
de poids, dans lequel le poids de l'extrémité de tuyau flexible (63) avec la valve
d'extrémité de tuyau flexible (13) est inférieur au contrepoids (22), dans lequel
le procédé comprend les étapes suivantes :
séparer la valve d'extrémité de tuyau flexible (13) de la valve de connecteur (14)
et permettre ainsi de :
tirer la ligne de suspension d'extrémité de tuyau flexible (27) et déplacer l'extrémité
de tuyau flexible (63) avec la valve d'extrémité de tuyau flexible (13) à distance
de l'ensemble de réception (90) par la force de traction fournie par le contrepoids.
13. Procédé pour le dégagement d'urgence selon la revendication 12,
caractérisé en ce qu'un agencement de suspension (120) raccorde la ligne de suspension d'extrémité de tuyau
flexible (27) à la valve d'extrémité de tuyau flexible (13) et l'agencement de suspension
(120) comprend une ligne de levage (117), une ligne de traction (116) et un support
de suspension (118), la ligne de levage (117) étant fixée à un point de fixation (121)
de la ligne de suspension d'extrémité de tuyau flexible (27) et à une première partie
d'extrémité du support de suspension (118), en outre la seconde partie d'extrémité
du support de suspension (118) est raccordée à la valve d'extrémité de tuyau flexible
(13) et la ligne de traction (116) est raccordée à la seconde partie d'extrémité du
support de suspension (118) et au point de fixation (121) de la ligne de suspension
d'extrémité de tuyau flexible (27), dans lequel lors de la traction de la ligne de
suspension d'extrémité de tuyau flexible (27) et du déplacement de l'extrémité de
tuyau flexible (63) avec la valve d'extrémité de tuyau flexible (13) à distance de
l'ensemble de réception (90), la traction de la ligne de suspension d'extrémité de
tuyau flexible (27) provoque tout d'abord le serrage de la ligne de levage (117),
ensuite le serrage de la ligne de traction (116) se traduit par un positionnement
de la valve d'extrémité de tuyau flexible (13) inclinée vers le bas dans la direction
de l'ensemble de réception (90).
14. Procédé pour le dégagement d'urgence selon l'une des revendications 12 à 13, caractérisé en ce que plusieurs tuyaux flexibles sont inclus dans l'ensemble de réception (90), et la libération
des tuyaux flexibles a lieu de manière séquentielle ou essentiellement en même temps.
REFERENCES CITED IN THE DESCRIPTION
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.
Patent documents cited in the description
Non-patent literature cited in the description
- CHARLES HUGHESRENAUD LE DEVEHATThe All Metal LNG Offloading System for the Adriatic LNG Terminal, 2006, [0006]