FIELD OF THE INVENTION
[0001] The invention concerns a boring rig for extraction boring below ground, including
a boring unit, and, supported by the boring unit, a boring aggregate having a cutting
head. The cutting head is pivotally adjustable for boring in different directions.
The invention also concerns a method of maneuvering a boring rig.
BACKGROUND OF THE INVENTION
[0002] Bore rigs for extraction boring are previously known, wherein a carrier vehicle supports
a boring unit with a cutter head. The boring unit is swingable in a plane at a right
angle to a general direction of movement of the boring rig with respect to the substructure
of the boring rig. The cutter head is driven axially from a position inside the thrusting
device by means of rotation and forcing in order to provide the boring operation.
[0003] A boring rig according to the background art is intended for and functions well for
underground operation but are time consuming to set up and its usefulness for production
boring is limited to specific applications.
[0004] From
US 7,357,458 is previously known a boring rig as initially mentioned which is particularly suitable
and adapted for extracting ore from ore carrying rock where the ore is present in
relatively thin layers extending through the rock.
[0005] Such ore often comes in very large shallow cup-shaped formations whereby excavating
of the ore is carried out in directions relatively closed to a horizontal plane.
[0006] Normally a boring unit of this kind is pivotal for action only over an angle of about
10° below a horizontal plane to about 30° over a horizontal plane.
AIM AND MOST IMPORTANT FEATURES OF THE INVENTION
[0007] It is an aim of this invention to provide a further development of a boring rig being
suitable for production boring in limited locations according to
US 7,357,458. In particular the invention relates to a boring rig being more flexible and allowing
boring with further enhanced precision at the same time as reduced set-up time. This
aims are achieved in that the boring unit, which has a length direction and two lateral
directions, at one end, as seen in said length direction, is connected over a first
swing joint to a first drive unit, that the boring unit at its second end, as seen
in said length direction, is connected over a second swing joint to a second drive
unit, that each drive unit has at least two wheels which are arranged individually
drivable, said at least two individually drivable wheels being positioned in sideways
relationship to each other, and that a first angular position of the first swing joint
as well as a second angular position of the second swing joint are adjustable, whereby
the position of the boring unit in lateral direction as well as an angular direction
of the length direction of the boring unit are adjustable. The invention also concerns
a method of manoeuvring a boring rig. A first angular position of the first swing
joint as well as a second angular position of the second swing joint are adjustable,
whereby the position of the boring unit in lateral direction as well as an angular
direction of the longitudinal direction of the boring unit are adjustable.
[0008] Said at least two individually drivable wheels can be arranged on a common wheel
axis or be provided with separate wheel axes.
[0009] Boring rig here means a machine equipped with a boring unit, which supports a boring
aggregate, to drive units and further optionally one or more support units connected
to the boring unit.
[0010] "Longitudinal direction" here means the direction from the first to the second swing
joint irrespectively if the boring unit is constructed such that any other one of
its dimensions, for example laterally, exceeds the dimension in this longitudinal
direction.
[0011] "Lateral directions" here means directions perpendicular to said longitudinal direction
as seen in a base plane for the boring unit, said base plane being defined as an imagined
plane through the boring unit being parallel to a horizontal plane when the boring
unit is ideally positioned horizontally.
[0012] The invention makes alternative movement patterns for the boring unit possible:
- i) Setting of the angular position of one of the swing joints.
- ii) Setting of angular position of both swing joints.
[0013] This gives the possibility of freedom of adjustment of the position of the boring
unit after different needs and starting positions.
[0014] The result will be fine-adjustment of an exactly desired position in lateral direction,
angular direction and also in longitudinal direction.
[0015] Through the invention is provided great freedom of uncomplicated accurate adjustment
of the set-up position of the boring rig such that it will be possible to drill with
high precision also relatively long holes in different directions, i.e. in such directions
that truly follow a rock formation intended for extraction.
[0016] The invention finds its application, besides in rock boring machines of so called
slot-boring type, also in respect of rock boring machines for raise boring and for
box hole boring.
[0017] During slot boring, it is important that the boring of each hole being performed
by the inventive boring rig, starts at an accurate level and with accurate direction
in a drift formed through the formation, a drift, wherein the boring rig is positioned
during boring. This can be easily achieved through the invention by the individually
manoeuvrable swing joints allowing precision positioning of the boring unit, through
adjustment of the swing joints for adequate position in the lateral direction and
an adequate angle of the longitudinal direction within the drift directly after having
forwarded the boring rig to an approximate boring position.
[0018] The achievement of adequate positioning and direction can be verified through conventional
navigating equipment which is typically accessible in the mine. Thereupon the boring
rig is stabilised vis-à-vis the side walls of the drift and possibly against its roof,
possible the rig will be lifted with lifting jacks and the boring aggregate be pivoted
to an intended production or elevation direction and be stabilized, whereupon boring
can be initiated.
[0019] Adjustment of the swing joints is suitably performed in a particular setting mode.
In this mode the adjustment can be performed entirely manually through individual/sequential
or at least partly simultaneous manoeuvring of the swing joints/the drivable wheels,
whereby a resulting positioning direction of the boring unit can be verified, with
ocular inspection or with the aid of instruments in respect of a should-position and
a should-direction.
[0020] According to the invention it is, however, also possible, depending on accessible
hard ware and soft ware support to provide a control system for manoeuvring the boring
rig in set-up mode, wherein for example an operator over entry devices such as for
example a joy-stick or any other per se known entry device feeding data into the control
system which in turn actuates the swing joints and/or the drivable wheels for obtaining
positioning and direction as desired.
[0021] It is possible during certain situations to ensure that the first and the second
swing joints in a particular driving mode are manoeuvrable together for facilitating
driving of the boring rig for example in case of tight passage of curves between extractions
sites. Having the swing joints manoeuvrable together here means that the same swing
angle is automatically set for both swing joints for swinging the boring rig.
[0022] It is preferred that one of the first or the second drive units is provided with
a lockable rocking joint for allowing rocking in respect of the boring unit. Through
the rocking movement, unevennesses in the ground are absorbed during driving and locking
gives the possibility of stabilization of a standing, possibly lifted boring rig.
The lockable rocking joint suitably adjoins to the swing joint between the drive unit
in question and the boring unit which gives the possibility of a simplified pendulum
construction.
[0023] It is preferred that the first drive unit includes a power unit for supplying the
boring rig with hydraulic liquid under pressure and that the second drive unit is
arranged for receiving drill string components and for providing drill string components
to the boring unit. The power unit can be a combustion motor or an electric motor.
[0024] It is, however, also possible to arrange separate, individually controllable hydraulic
motors and/or electric motors in respect of each one of the wheels.
[0025] It is further preferred that the second drive unit is an operator's unit and exhibits
an interface for operator co-operation. This can for example be realised through an
operator's cabin been equipped with the usual driving controls and switches for set-up
mode and driving mode. Possibly the boring rig is equipped with distance control means
including driving controls and switches allowing manoeuvring of the boring rig from
a distance.
[0026] According to an important aspect of the invention the first and the second drive
units are constructed as modules being connectable as desired to the boring unit forming
a boring module in order to form said first or second swing joint together therewith.
Hereby the boring rig can be easily rearranged such that it can be adapted for boring
in a desired lateral direction. This is accentuated by the first and second swing
joints being constructed as quick release joints with mechanical as well as hydraulic
quick couplings. This can be realised when it comes to the swing joints in that a
swing shaft is simply retractable from a seat being formed by swing joint components
on each module.
[0027] Said first and second swing joints are suitably manoeuvrable through any one of:
- 1) Through driving of at least one wheel and braking/locking of the remaining wheels.
Driving can be in opposite direction and with the same or different rotational speeds
for different wheels.
- 2) Through activation of swing motors such as hydraulic cylinders between the boring
unit and the respective drive unit.
- 3) Through a combination of 1) and 2).
[0028] It is preferred that the boring unit is provided with lifting jacks for lifting the
entire boring rig. This gives firstly an opportunely to align the boring rig at an
accurate level in the drift, secondly to align the parts of the boring rig to each
other after having determined the position of the boring unit. Normally the second
drive unit has to be aligned in respect of and lined up with the boring unit for allowing
drill string components to be transferred between these bore rig parts.
[0029] Preferably the boring unit is provided with stabilizing jacks (for fastening the
entire boring rig against adjacent rock sides.
[0030] The invention also concerns a method for maneuvering a boring rig for boring below
ground, wherein the boring rig includes: a boring unit with a longitudinal direction
and two lateral directions, and a boring aggregate being supported by the boring unit
and being equipped with rotation and thrusting means for a cutting head for boring
in directions at an angle to said longitudinal direction. The boring unit at one end,
as seen in a length direction, over a first swing joint is swung in respect of a first
drive unit, and at its second end, as seen in said length direction, over a second
swing joint in respect of a second drive unit. Each drive unit is driven by two wheels
which are arranged individually drivable on a wheel axis, and the first and the second
swing joint are maneuvered individually in an adjusting mode to adjust the position
of the boring unit in lateral direction as well as an angular direction of the length
direction of the boring unit.
[0031] Advantages corresponding to what is indicated for corresponding device features are
achieved in respect of features characterizing the inventive method. Further features
and advantages are evident from the following description of an embodiment.
BRIEF DESCRIPTION OF DRAWINGS
[0032] The present invention will be described in greater detail below with reference to
the annexed drawings, wherein:
Fig. 1 is a longitudinal section through a drift extending through rock, and with
a boring rig drilling a series of overlapping holes,
Fig. 2 is a cross section through the drift in Fig. 1,
Fig. 3 is a perspective view of a boring rig according to the invention,
Figs. 4 and 5 are plane views of differently ranged boring rigs according to the invention,
Fig. 6 shows diagrammatically a method sequence according to the invention,
Figs. 7a - 7c show the boring rig during a set-up phase in a drift, and
Fig. 8 shows a swing joint arrangement.
DESCRIPTION OF EMBODIMENT
[0033] A boring rig in Fig. 1 globally includes three modules, that is a boring module in
the form a boring unit 1 with a boring aggregate having means for rotation and thrusting
of a cutting head 6, a power module in the form of a first drive unit 2 and an operator
module in the form of a second drive unit 3. Different machine part such as driving
means, stabilisation means, a drill string component supply and drill string joining
means are included in the boring rig. Some of these machines are not shown in the
Figures. The operation of the boring rig is controlled by a computerised control system
28.
[0034] In the Figs. 1 and 2, 10 is a rock having a relatively thin ore-bearing formation
11 extending therethrough. The extension and approximate thickness of the ore-bearing
formation has been determined by drilling from the surface of the ground above the
formation. A drift 12 has been made through the rock so as to have the ore-bearing
formation 11 extending therealong. The extension and approximate thickness t of the
ore-bearing formation determined is indicated in Figs. 1 and 2 by two spaced interrupted
lines extending along the drift.
[0035] As seen in Fig. 2, the ore-bearing formation 11 is shown to be inclined and the boring
aggregate has consequently been pivoted to an elevation angle α.
[0036] A base plane of the boring unit 1 is indicated with B. The cutting head 6 having
a diameter d substantially corresponding to the approximate thickness t of the ore-bearing
layer 11 determined is used to drill a first hole H
1 along an axis A
1 extending along an approximate mid-plane M of the layer 11 (Fig. 1).
[0037] After completion of the first hole H
1 (see Fig. 1), a second hole H
2 is drilled along a second axis A
2 also extending along the approximate mid-plane of the ore-bearing layer 11. The axes
A
1 and A
2 are parallel if the layer is a 'plane' layer, but they may as well be non-parallel
if the layer is curved. The spacing s between the axes A
1 and A
2 is chosen such that the holes H
1 and H
2 intersect or overlap one another as shown in Fig. 1. In other words, the spacing
s is less than the drill diameter d. Evidently, depending on the spacing chosen, more
or less material is left unbroken in areas where two holes do not intersect.
[0038] The drill cuttings yielded are continuously collected. An example how this can be
realised is to arrange a suction equipment adjacent to the cutter head, said suction
equipment discharging loosened material to a collecting station for subsequent further
handling.
[0039] In order to achieve acceptable economy of the boring rig in the process of boring
the holes H
1, H
2, H
3, H
4 and H
5, rapid and accurate set-up of the boring rig is essential. This is provided for by
the present invention.
[0040] The bore string consists of a number of axially aligned, connected bore string components
30, which are added to the bore string in a manner which is not part of the invention
and therefore not further discussed here.
[0041] In Fig. 3 is shown an alternative boring rig in greater detail. The boring unit 1
which includes the base plane B, (see Figs. 1 and 2), has a body 4 which supports
a boring aggregate 5 with rotation and trusting means for a cutter head 6. The boring
aggregate 5 is in the shown example swingably adjustable for boring in directions
essentially perpendicular to a longitudinal direction L of the boring unit 1.
[0042] It shall be emphasized that the invention also relates to boring rigs having boring
units equipped with boring aggregates being swingably adjustable for boring in other
directions than essentially perpendicular to the longitudinal direction L. Such boring
aggregates can even be swingable 360° around an axis being perpendicular to the base
plane of the boring unit besides being swingable in an elevation direction α.
[0043] The boring unit 1 is over a first swing joint 14 connected to a first drive unit
2 being a power module, which in a housing includes a power unit, hydraulic pumps
etc for supply to the boring rig with hydraulic oil under pressure. The first drive
unit 2 includes two individually drive controllable/drivable wheels on one wheel axis,
whereof one is indicated with 8 in the Figure. As is indicated above it is also possible
to arrange supported wheels otherwise than on a common wheel axis and also to arrange
separate individually controllable electric motors at each one of the wheels.
[0044] On the opposite side of the boring unit 1 it adjoins over a second swing joint 15
to a second drive unit 3 being operator's module. This unit has an interface for the
co-operation with an operator in an operator's cabin 31 and a supply of drill string
components 31 which through a suitable supply mechanism are made accessible for the
boring unit 1 during boring operation of the boring rig.
[0045] The first and the second swing joints 14 and 15 are only moveable in the base plane
B and prevent movements at angles thereto.
[0046] In connection with the first swing joint 14, there is arranged a lockable rocking
joint 19 (indicated with interrupted lines), in the first drive unit 2, allowing a
rocking movement of the first drive unit 2 in respect of the boring unit 1 and the
second drive unit 3 for facilitating driving on uneven ground.
[0047] Also the second drive unit 3 includes two individually drivable wheels on a wheel
axis, whereof one is indicated with 10 on Fig. 3. The boring unit 1 exhibits lifting
jacks 13 arranged on its body 4, in principle one lifting jack 13 in each one of the
four corners of the body 4, for the application against ground and for support and/or
lifting of the entire boring rig from its support.
[0048] When the entire boring rig is lifted by the lifting jacks 13, the drive units 2 and
3 are free to be aligning in line with the boring unit 1. In particular it is normally
required to align the second drive unit 3 with its supply of drill string components
with the boring unit 1 for making it possible or at least facilitate transfer of drill
string components between these units.
[0049] On the body 4, there are also shown stabilizing jacks 16, which when actuated will
come into stabilizing application against a rock side in the drift where the boring
rig is arranged to operate. Corresponding stabilizing jacks are provided on the second
side of the boring rig for stabilizing application to an adjacent rock side.
[0050] Figs. 4 and 5 show the boring rig according to Fig. 3 in two plane views and arranged
in two different ways. The boring unit 1 has a length direction L and a first and
a second lateral direction S1 and S2, respectively.
[0051] The boring rig according to the invention is suitably made modular in such a way
that the first and the second drive unit 2 and 3 respectively can be connected to
an optional side (seen in the length direction L) of the boring unit 1. This way the
boring rig can be arranged for boring in the desired lateral direction S1 or S2 in
a drift where it is arranged to operate. For this purpose, the modules are releasable
from each other and fastenable to each other in both the intended positions. This
is realized in an embodiment illustrated in the Figures by the first as well as the
second swing joint being constructed to be simply releasable swing joints. For example,
in the swing joints there can be included extractable swing shafts allowing separation
of the modules when they are extracted. Hydraulic conduits are advantageously arranged
with quick couplings for quick switching during rearranging the boring rig.
[0052] The first and the second drive units are suitably individually drivable such that
they for example with the addition of one or two support wheels can be individually
brought to be driven their selves and be controlled for displacement to a chosen position
for (re-) arranging or for any other purpose.
[0053] The boring unit 1 has no drive wheels and is normally displaced only with the first
and the second drive units connected. It is, however, not excluded that the boring
unit 1 is provided with or connectable with wheels to facilitate displacement, swinging
etc. through for example towing thereof in order to, for example, change boring directions
180°.
[0054] For maneuvering the swing joints 14 and 15, suitably there are arranged hydraulic
cylinders 7 positioned between the adjacent parts/modules. This is indicated with
interrupted lines on Figs. 4 and 5. As alternatives the swing joints can be maneuvered
through precisions maneuvering of the drivable wheels on the drive units. As a further
alternative, a combination of these variants can be adapted.
[0055] These principles can in turn be combined with control through a control system controlling
wheel - driving/braking/locking of the individually drivable wheels respectively the
movements of the hydraulic cylinders starting out from data entered by an operator
or from given should-values of the position of the boring unit 1 in lateral direction
and alignment position of the boring unit 1 in the length direction L. This procedure
can be automated in different degrees all the way to complete automatization with
computer-supported control starting out from detected position of the rig.
[0056] Fig. 6 shows diagrammatically a method sequence according to the invention, wherein:
Position 20 indicates the start of the sequence.
Position 21 indicates driving of the boring rig into an approximate boring position,
wherein each drive unit is driven by two individually drivable wheels arranged on
the wheel axis.
Position 22 indicates that the boring unit at its one end, as seen in said length
direction, is swung relative to a first drive unit over a first swing joint.
Position 23 indicates that the boring unit at its second end, as seen in said length
direction, over a second swing joint is swung relative to a second drive unit.
Position 24 indicates that the position in the lateral direction as well as a length
direction of the boring unit is adjusted by setting a first angular position of the
first swing joint as well as a second angular position of the second swing joint.
Thereupon follows verification that the set position is accurate.
Position 25 indicates that lifting jacks lift the boring rig and that the boring rig
is aligned.
Position 26 indicates the end of the sequence.
[0057] The events above can in certain cases occur simultaneously or partly simultaneously.
The above is followed by fastening into the drift, setting the boring aggregate, performing
boring etc.
[0058] Figs. 7a - 7c show diagrammatically different positions during a set-up sequence
for the boring rig according to the invention. In Fig. 7a, the boring rig has been
driven into a drift at a suitable distance from the rock wall 27 against which extraction
boring is to be performed.
[0059] Fig. 7b shows maneuvering of one of the swing joints 14 for side displacement of
the corresponding end of the boring unit 1 towards said rock wall 27.
[0060] Fig. 7c shows that also the second swing joint 15 has been swung for side displacement
also of the second end of the boring unit 1 towards said rock wall 27 and wherein
is ensured that the length direction L of the boring unit and its side position in
the lateral directions S1 and S2 in respect of the rock wall 27 and in particular
to the rock formation to be extracted is according to what has been planned.
[0061] A control unit being included in the control system of the boring rig (28 in Fig.
3) advantageously controls the different stabilization means and motors for pivoting
the boring aggregate 5 before operation in order to obtain an elevation angle for
boring purposes.
[0062] Fig. 8 shows a swing joint arrangement; wherein on the body 4 at each side of the
swing joint 14 there are fastened piston rods of hydraulic cylinders 7. These hydraulic
cylinders 7 are in turn fastened on a component associated with any one of the drive
units fastened to the swing joint. The swing joint 14 can be maneuvered through controlled
hydraulic flow to the sides of the hydraulic cylinders in a per se known manner.
[0063] The invention can be modified within the scope of the following claims. For this
purpose the different means and elements can be constructed otherwise than what is
shown in the Figures. The modules comprising drive units can be equipped otherwise,
and it is not excluded that one or further more use can also be attached (connected)
to the boring rig, even if this is not preferred.
[0064] In an alternative embodiment of the invention, the boring unit 1 itself is equipped
with power unit, hydraulic pumps etc. for supply of the boring rig with hydraulic
oil under pressure. The individual drive controllable/drivable wheels on the first
as well as on the second drive unit can in this case be driven from the boring unit
to the extent that they do not have individual separate driving, for example electric
or hydraulic.
[0065] It is also possible that in further alternative embodiments of the invention, instead
or also equip a boring unit 1 as operating module with interface for co-operation
with an operator in the form of a operator's cabin and/or with a supply of drill string
components.
1. Boring rig for extraction boring below ground, wherein the boring rig includes:
- a boring unit (1), and
- a boring aggregate (5) being supported by the boring unit (1) said boring aggregate
(5) being equipped with rotation and thrusting means for a cutting head (6) and being
pivotally adjustable for boring in different direction,
- the boring unit (1) having a length direction (L) and two lateral directions (S1,S2),
characterized in
- that said boring rig further comprises a first and a second drive unit (2, 3),
- that the boring unit (1) at one end, as seen in said length direction, is connected over
a first swing joint (14) to the first drive unit (2),
- that the boring unit (1) at its second end, as seen in said length direction, is connected
over a second swing joint (15) to the second drive unit (3),
- that each drive unit (2,3) has at least two wheels (8,10) which are arranged individually
drivable, said at least two individually drivable wheels being positioned in sideways
relationship to each other, and
- that a first angular position of the first swing joint (14) as well as a second angular
position of the second swing joint (15) are adjustable, whereby the position of the
boring unit (1) in lateral direction (S1,S2) as well as an angular direction of the
length direction (L) of the boring unit are adjustable.
2. Boring rig according to claim 1,
c h a r a c t e r i z e d in that the first and the second swing joints (14,15) in
a driving mode are maneuverable together.
3. Boring rig according to claim 1 or 2,
characterized in that the first or the second drive unit (2,3) exhibits a lockable rocking joint (19) for
allowing rocking in respect of the boring unit (1), and in that the lockable rocking joint (19) adjoins to the swing joint (14,15) between the associated
drive unit (2,3) and the boring unit (1).
4. Boring rig according to any one of the previous claims,
characterized in
- that the first drive unit (2) includes a power unit for supplying the boring rig with
hydraulic liquid under pressure.
5. Boring rig according to any one of the previous claims,
characterized in
- that the second drive unit (3) is arranged for receiving drill string components and for
providing drill string components to the boring unit (1).
6. Boring rig according to claim 5, characterized in that the second drive unit (3) is an operator's unit and exhibits an interface for operator
co-operation.
7. Boring rig according to any one of the previous claims,
characterized in that the boring unit (1) and the first and the second drive units (2,3) are constructed
as modules being connectable as desired to the boring unit (1) forming a boring module
in order to form said first or second swing joint (14,15) together therewith.
8. Boring rig according to claim 7, characterized in that said first and second swing joints (14,15) are constructed as quick releasable joints
with mechanical as well as hydraulic quick couplings.
9. Boring rig according to any one of the previous claims,
characterized in that said first and second swing joints (14, 15) are maneuverable through anyone of: hydraulic
cylinders (7) acting between the boring unit and the respective drive unit; individual
control of the drivable wheels (8,10) of the drive units.
10. Boring rig according to any one of the previous claims,
characterized in that the boring unit (1) is provided with lifting jacks (13) for lifting the entire boring
rig.
11. Boring rig according to any one of the previous claims,
characterized in that the boring unit (1) is provided with stabilizing jacks (16) for fastening the entire
boring rig against adjacent rock sides.
12. Method for maneuvering a boring rig for boring below ground, wherein the boring rig
includes:
- a boring unit (1), and
- a boring aggregate (5) being supported by the boring unit (1) said boring aggregate
(5) being equipped with rotation and thrusting means for a cutting head (6) and being
pivotally adjustable for boring in different direction,
characterized in
- that the boring unit (1) at one end, as seen in a length direction, over a first swing
joint (14) is swung in respect of a first drive unit (2),
- that the boring unit (1) at its second end, as seen in said length direction, over a second
swing joint (15) is swung in respect of a second drive unit (3),
- that each drive unit (2,3) is driven by two wheels (8,10) which are arranged individually
drivable on a wheel axis, and
- that a first angular position of the first swing joint (14) as well as a second angular
position of the second swing joint (15) are adjusted, whereby the position of the
boring unit (1) in lateral direction (S1,S2) as well as an angular direction of the
length direction (L) of the boring unit are adjusted.
13. Method according to claim 12,
characterized in
- that the second drive unit (3) receives drill string components and provides drill string
components to the boring unit (1).
14. Method according to claim 12 or 13,
characterized in that the entire boring rig is lifted through lifting jacks (13) being provided on the
boring unit (1).
15. Method according to any one of the claims 12 - 14,
characterized in that the entire boring rig is fastened against adjacent rock sides through stabilizing
jacks (16) provided on the boring unit (1).
1. Bohranlage zur Förderbohrung unter Tage, wobei die Bohranlage Folgendes umfasst:
- eine Bohreinheit (1) und
- ein Bohraggregat (5), das von der Bohreinheit (1) getragen wird, wobei das Bohraggregat
(5) mit einer Dreh- und Stichvorrichtung für einen Schneidkopf (6) versehen ist und
zur Bohrung in unterschiedlicher Richtung schwenkbar verstellbar ist, wobei die Bohreinheit
(1) eine Längsrichtung (L) und zwei seitliche Richtungen (S1, S2) aufweist, dadurch gekennzeichnet, dass
- die Bohranlage ferner eine erste und eine zweite Antriebseinheit (2, 3) umfasst,
- die Bohreinheit (1) an einem Ende, in der Längsrichtung gesehen, über ein erstes
Drehgelenk (14) mit der ersten Antriebseinheit (2) verbunden ist,
- die Bohreinheit (1) an ihrem zweiten Ende, in der Längsrichtung gesehen, über ein
zweites Drehgelenk (15) mit der zweiten Antriebseinheit (3) verbunden ist,
- jede Antriebseinheit (2, 3) mindestens zwei einzeln antreibbar angeordnete Räder
(8, 10) aufweist, wobei die mindestens zwei einzeln antreibbaren Räder in seitlicher
Beziehung zueinander platziert sind und
- eine erste Winkelstellung des ersten Drehgelenks (14) sowie eine zweite Winkelstellung
des zweiten Drehgelenks (15) einstellbar sind, wobei die Position der Bohreinheit
(1) in seitlicher Richtung (S1, S2) sowie eine Winkelrichtung der Längsrichtung (L)
der Bohreinheit einstellbar sind.
2. Bohranlage nach Anspruch 1, dadurch gekennzeichnet, dass das erste und das zweite Drehgelenk (14, 15) im Antriebsmodus zusammen manövrierfähig
sind.
3. Bohranlage nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die erste oder die zweite Antriebseinheit (2, 3) eine verriegelbare Kippverbindung
(19) aufweist, um ein Kippen in Bezug auf die Bohreinheit (1) zu ermöglichen, und
dass die verriegelbare Kippverbindung (19) an das Drehgelenk (14, 15) zwischen der
zugehörigen Antriebseinheit (2, 3) und der Bohreinheit (1) angrenzt.
4. Bohranlage nach einem der vorhergehenden Ansprüche,
dadurch gekennzeichnet, dass
- die erste Antriebseinheit (2) ein Aggregat zur Versorgung der Bohranlage mit unter
Druck stehender Hydraulikflüssigkeit umfasst.
5. Bohranlage nach einem der vorhergehenden Ansprüche,
dadurch gekennzeichnet, dass
- die zweite Antriebseinheit (3) dafür ausgelegt ist, Bohrstrangkomponenten aufzunehmen
und Bohrstrangkomponenten für die Bohreinheit (1) bereitzustellen.
6. Bohranlage nach Anspruch 5, dadurch gekennzeichnet, dass die zweite Antriebseinheit (3) eine Bedieneinheit ist und eine Schnittstelle zur
Zusammenwirkung mit dem Bediener aufweist.
7. Bohranlage nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Bohreinheit (1) und die erste und die zweite Antriebseinheit (2, 3) als Module
konstruiert sind, die nach Wunsch zur Bildung eines Bohrmoduls mit der Bohreinheit
(1) verbunden werden können, um das erste oder das zweite Drehgelenk (14, 15) zusammen
mit diesen zu bilden.
8. Bohranlage nach Anspruch 7, dadurch gekennzeichnet, dass das erste und das zweite Drehgelenk (14, 15) als schnell lösbare Gelenke mit mechanischen
sowie hydraulischen Schnellkupplungen konstruiert sind.
9. Bohranlage nach einem der vorhergehenden Ansprüche,
dadurch gekennzeichnet, dass das erste und das zweite Drehgelenk (14, 15) durch eines der Folgenden manövrierfähig
sind:
hydraulische Zylinder (7), die zwischen der Bohreinheit und der jeweiligen Antriebseinheit
wirken; individuelle Steuerung der antreibbaren Räder (8, 10) der Antriebseinheiten.
10. Bohranlage nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Bohreinheit (1) mit Hebern (13) zum Heben der gesamten Bohranlage versehen ist.
11. Bohranlage nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Bohreinheit (1) mit Stabilisierungshülsen (16) zur Befestigung der gesamten Bohranlage
an benachbarten Felsenseiten versehen ist.
12. Verfahren zum Manövrieren einer Bohranlage zur Bohrung unter Tage, wobei die Bohranlage
Folgendes umfasst:
- eine Bohreinheit (1) und
- ein Bohraggregat (5), das von der Bohreinheit (1) getragen wird, wobei das Bohraggregat
(5) mit einer Dreh- und Stichvorrichtung für einen Schneidkopf (6) versehen ist und
zur Bohrung in unterschiedlicher Richtung schwenkbar verstellbar ist, dadurch gekennzeichnet, dass
- die Bohreinheit (1) an einem Ende, in Längsrichtung gesehen, über ein erstes Drehgelenk
(14) in Bezug auf eine erste Antriebseinheit (2) gedreht wird,
- die Bohreinheit (1) an ihrem zweiten Ende, in Längsrichtung gesehen, über ein zweites
Drehgelenk (15) in Bezug auf eine zweite Antriebseinheit (3) gedreht ist,
- jede Antriebseinheit (2, 3) von zwei auf einer Radachse angebrachten einzeln antreibbaren
Rädern (8, 10) angetrieben wird, und dass
- eine erste Winkelstellung des ersten Drehgelenks (14) und eine zweite Winkelstellung
des zweiten Drehgelenks (15) eingestellt werden, wobei die Position der Bohreinheit
(1) in seitlicher Richtung (S1, S2) sowie eine Winkelrichtung der Längsrichtung (L)
der Bohreinheit eingestellt werden.
13. Verfahren nach Anspruch 12,
dadurch gekennzeichnet, dass
- die zweite Antriebseinheit (3) Bohrstrangkomponenten aufnimmt und Bohrstrangkomponenten
der Bohreinheit (1) bereitstellt.
14. Verfahren nach Anspruch 12 oder 13, dadurch gekennzeichnet, dass die gesamte Bohranlage durch Heber (13) gehoben wird, die an der Bohreinheit (1)
vorgesehen sind.
15. Verfahren nach einem der Ansprüche 12-14,
dadurch gekennzeichnet, dass die gesamte Bohranlage mit Stabilisierungshülsen (16) an benachbarten Felsenseiten
befestigt ist, die an der Bohreinheit (1) vorgesehen sind.
1. Appareil de sondage destiné au sondage d'extraction sous le sol, l'appareil de sondage
comportant :
- une unité de sondage (1), et
- un module de sondage (5) supporté par l'unité de sondage (1) ledit module de sondage
(5) étant équipé de moyens de rotation et de poussée de la tête de forage (6) et étant
réglable de façon pivotante pour sonder dans des sens différents,
- l'unité de sondage (1) ayant un sens longitudinal (L) et deux sens latéraux (S1,
S2), caractérisé en ce que
- ledit appareil de sondage comprend en outre une première et une seconde unité d'entraînement
(2, 3),
- l'unité de sondage (1) à une extrémité, vue dans ledit sens longitudinal, est reliée
par une première genouillère (14) à la première unité d'entraînement (2),
- l'unité de sondage (1) à sa seconde extrémité, vue dans ledit sens longitudinal,
est reliée par une seconde genouillère (15) à la seconde unité d'entraînement (3),
- chaque unité d'entraînement (2,3) comporte au moins deux roues (8,10) qui sont agencées
pour être entraînées individuellement, lesdites au moins deux roues individuellement
entraînables étant positionnées l'une latéralement à l'autre, et
- une première position angulaire de la première genouillère (14) ainsi qu'une seconde
position angulaire de la seconde genouillère (15) sont réglables, si bien que la position
de l'unité de sondage (1) dans le sens latéral (S1,S2) ainsi que dans un sens angulaire
du sens longitudinal (L) de l'unité de sondage sont réglables.
2. Appareil de sondage selon la revendication 1, caractérisé en ce que les première et seconde genouillères (14,15) dans un mode d'entraînement sont manoeuvrables
ensemble.
3. Appareil de sondage selon la revendication 1 ou 2, caractérisé en ce que la première ou la seconde unité d'entraînement (2,3) présente un raccord basculant
verrouillable (19) pour permettre un basculement par rapport à l'unité de sondage
(1), et en ce que le raccord basculant verrouillable (19) est rattaché à la genouillère (14,15) entre
l'unité d'entraînement associée (2,3) et l'unité de sondage (1).
4. Appareil de sondage selon l'une quelconque des revendications précédentes,
caractérisé en ce que
- la première unité d'entraînement (2) comporte un groupe générateur pour fournir
un liquide hydraulique sous pression à l'appareil de sondage.
5. Appareil de sondage selon l'une quelconque des revendications précédentes,
caractérisé en ce que
- la seconde unité d'entraînement (3) est agencée pour recevoir des composants de
train de forage et fournir des composants de train de forage à l'unité de sondage
(1).
6. Appareil de sondage selon la revendication 5, caractérisé en ce que la seconde unité d'entraînement (3) est une unité d'opérateur et présente une interface
pour la coopération de l'opérateur.
7. Appareil de sondage selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de sondage (1) et les première et seconde unités d'entraînement (2,3) sont
construites sous forme de modules pouvant être reliés comme on le souhaite à l'unité
de sondage (1) formant un module de sondage afin de former ladite première ou seconde
genouillère (14,15) avec celui-ci.
8. Appareil de sondage selon la revendication 7, caractérisé en ce que lesdites première et seconde genouillères (14,15) sont construites sous forme de
raccords à dégagement rapide avec des raccords rapides mécaniques ainsi qu'hydrauliques.
9. Appareil de sondage selon l'une quelconque des revendications précédentes, caractérisé en ce que lesdites première et seconde genouillères (2,3) sont manoeuvrables au moyen de l'un
quelconque : de cylindres hydrauliques (7) agissant entre l'unité de sondage et l'unité
d'entraînement respective ; d'une commande individuelle des roues entraînables (8,10)
des unités d'entraînement.
10. Appareil de sondage selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de sondage (1) est dotée de vérins de levage (13) pour lever l'ensemble de
l'appareil de sondage.
11. Appareil de sondage selon l'une quelconque des revendications précédentes, caractérisé en ce que l'unité de sondage (1) est dotée de vérins de stabilisation (16) pour fixer l'ensemble
de l'appareil de sondage contre des parois rocheuses adjacentes.
12. Procédé servant à manoeuvrer un appareil de sondage sous le sol, dans lequel l'appareil
de sondage comporte :
- une unité de sondage (1), et
- un module de sondage (5) supporté par l'unité de sondage (1) ledit module de sondage
(5) étant équipé de moyens de rotation et de poussée de la tête de forage (6) et étant
réglable de façon pivotante pour sonder dans des sens différents, caractérisé en ce que
- l'unité de sondage (1) à une extrémité, vue dans un sens longitudinal, est balancée
sur une première genouillère (14) par rapport à une première unité d'entraînement
(2),
- l'unité de sondage (1) à sa seconde extrémité, vue dans ledit sens longitudinal,
est balancée sur une seconde genouillère (15) par rapport à une seconde unité d'entraînement
(3),
- chaque unité d'entraînement (2,3) est entraînée par deux roues (8,10) agencées pour
être entraînables individuellement sur un axe de roue, et,
- une première position angulaire de la première genouillère (14) ainsi qu'une seconde
position angulaire de la seconde genouillère (15) sont réglables, si bien que la position
de l'unité de sondage (1) dans le sens latéral (S1,S2) ainsi que dans un sens angulaire
du sens longitudinal (L) de l'unité de sondage sont réglées.
13. Procédé selon la revendication 12,
caractérisé en ce que
- la seconde unité d'entraînement (3) reçoit des composants de train de forage et
fournit des composants de train de forage à l'unité de sondage (1) .
14. Procédé selon la revendication 12 ou 13, caractérisé en ce que l'ensemble de l'appareil de sondage est levé au moyen de vérins de levage (13) fournis
sur l'unité de sondage (1).
15. Procédé selon l'une quelconque des revendications 12 à 14, caractérisé en ce que l'ensemble de l'appareil de sondage est fixé contre des parois rocheuses adjacentes
au moyen de vérins de stabilisation (16) fournis sur l'unité de sondage (1) .