Anti-twist frame, vessel and method for lowering an object in a water body
10919605 ยท 2021-02-16
Assignee
Inventors
Cpc classification
B66C1/62
PERFORMING OPERATIONS; TRANSPORTING
B63B2027/165
PERFORMING OPERATIONS; TRANSPORTING
B66C13/08
PERFORMING OPERATIONS; TRANSPORTING
B66C13/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66C1/62
PERFORMING OPERATIONS; TRANSPORTING
B66C13/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a method for lowering an object in a water body from a vessel floating on the water body, the vessel comprising first hoisting means with second hoisting means arranged on or near the vessel, with at least a first anti-twist frame (ATF) being connected to a lower end of a first hoisting cable of the first hoisting means, the object being attached to the lower end of the first hoisting cable, below the ATF. The method allows for adjusting the vessel's heading prior to carrying out the method, allowing the vessel to remain substantially aligned with the wind/wave direction, and at the same time preventing the first hoisting cable from being subjected to excessive twist.
Claims
1. A method for lowering an object in a water body from a vessel floating on the water body, the vessel comprising a first hoisting means and a second hoisting means, the first hoisting means and the second hoisting means arranged on or near the vessel, with at least a first anti-twist frame (ATF) being connected to a lower end of a first hoisting cable of the first hoisting means, the object being attached to the lower end of the first hoisting cable, below the ATF, comprising the steps of: a) adjusting the vessel's heading such that the vessel is aligned with the wave direction, b) lowering the object in the water body with the first hoisting means until the object has reached a first depth (FD); c) using the second hoisting means to lower the object together with the first hoisting means as found in step b), wherein the second hoisting means is connected to another part of the object, or else, to lower a clump weight in the water body to the first depth (FD), wherein the clump weight is connected to the lower end of the second hoisting cable, d) providing an anti-twist wire extending between the first ATF and the second hoisting cable, the first ATF comprising a circumferential part with a plurality of connection means arranged for connecting the anti-twist wire at a plurality of connection points on the circumferential part, in a plurality of directions, and selecting such a connection point that, after connection, twist of the first hoisting cable is minimized, and the first ATF comprising a central part for attachment to a crane block, wherein the circumferential part is connected to the central part and extends in a plane perpendicular to the respective hoisting cable, during use, wherein the plurality of connection means are arranged at multiple positions along the circumference of the circumferential part to allow the longitudinal direction of the anti-twist wire to intersect the longitudinal direction of the respective hoisting cable for a plurality of anti-twist wire directions, and wherein the plurality of connection means are spaced-apart along the circumference, and e) using the first and/or the second hoisting means to lower the object onto the bottom of the water body.
2. The method according to claim 1, wherein a second anti-twist frame (ATF) is connected to a crane block arranged near a lower end of the second hoisting cable of the second hoisting means and the anti-twist wire extends between the first ATF and the second ATF, wherein the connection points of the anti-twist wire on the first ATF and the second ATF are so chosen, that, after connection, twist of the first and second hoisting cables is minimized.
3. The method according to claim 1, wherein the plurality of connection means are spaced-apart along the circumference at a mutual spacing angle of 20-30.
4. The method according to claim 1, wherein the method further comprises monitoring at least one of the steps b)-e) with a subsea vehicle.
5. The method according to claim 4, wherein the subsea vehicle is a remotely operated vehicle (ROV).
6. The method according to claim 1, wherein the first depth (FD) is 25-75 m under the waterline (WL).
7. A vessel for use with a method according to claim 1, comprising a first hoisting means and a second hoisting means arranged on a deck of the vessel, at one side of the vessel, a first and/or a second anti-twist frame (ATF) and an anti-twist wire for arrangement between the first and second ATF or the first ATF and the second hoisting cable, wherein the first and/or second ATF comprise a circumferential part with a plurality of connection means arranged for connecting the anti-twist wire at a plurality of connection points on the circumferential part, in a plurality of directions, and the first ATF and/or the second ATF comprising a central part for attachment to a crane block, wherein the circumferential part is connected to the central part and extends in a plane perpendicular to the respective hoisting cable, during use, wherein the plurality of connection means are arranged at multiple positions along the circumference of the circumferential part to allow the longitudinal direction of the anti-twist wire to intersect the longitudinal direction of the respective hoisting cable for a plurality of anti-twist wire directions, and wherein the plurality of connection means are spaced-apart along the circumference.
8. An anti-twist frame (ATF) for use with the method according to claim 1, comprising a circumferential part with a plurality of connection means arranged for connecting the anti-twist wire at a plurality of connection points on the circumferential part, in a plurality of directions, and the ATF comprising a central part for attachment to the crane block, wherein the circumferential part is connected to the central part and extends in a plane perpendicular to the respective hoisting cable, during use, wherein the plurality of connection means are arranged at multiple positions along the circumference of the circumferential part to allow the longitudinal direction of the anti-twist wire to intersect the longitudinal direction of the respective hoisting cable for a plurality of anti-twist wire directions, and wherein the plurality of connection means are spaced-apart along the circumference.
9. The ATF according to claim 8, wherein the plurality of connection means are spaced-apart along the circumference at a mutual spacing angle of 20-30.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be explained in more detail below with reference to drawings in which illustrative embodiments thereof are shown. They are intended exclusively for illustrative purposes and not to restrict the inventive concept, which is defined by the appended claims.
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DETAILED DESCRIPTION OF EMBODIMENTS
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(12) The first hoisting means 3 is arranged for lowering the object 1 below the waterline WL into the water body 2. The second hoisting means 3 is arranged for lowering a clump weight 6, shown in
(13) In a submerging step of the aforementioned method for lowering an object 1 in a water body 2 using the hoisting means 3,3, the object 1 is releasably connected to the lower end 5 of the first hoisting means 3. Then the object 1 is lowered below the waterline WL into the water body 2 until the object 1 has basically reached a first depth FD.
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(16) Furthermore, it is possible to use alternative configurations with connection points in the hoisting plane for creating the framework 7. And, as stated before, the second ATF can in principle be omitted.
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(19) In an embodiment of the invention, the first and second crane 11,11 can be supported by respectively a first and a second structure of the at least one support structures 10. Each crane 11,11 comprises a crane block 12,12 which, during use, is provided with respectively a first and a second anti-twist frame 4, 4.
(20) During operation the first and second cranes 11,11 are arranged in such a manner that the water body is in working range of the first and second crane 11,11. Moreover, the destination position in the water body 2 also needs to be within working range of the first and second crane 11,11.
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(22) More preferably, the connection means 25 comprise pad-eye anti-twist wire connections arranged for connection of an anti-twist wire to prevent twist of the anti-twist frame 4.
(23) Other alternatives and equivalent embodiments of the present invention are conceivable within the idea of the invention, as will be clear to the person skilled in the art. The scope of the invention is limited only by the appended claims.
LIST OF REFERENCE SIGNS
(24) 1. Object 2. Water body 3. First hoisting means 3. Second hoisting means 4. Anti-twist frame 4. Anti-twist frame of the first hoisting means 4. Anti-twist frame of the second hoisting means 5. Lower end of the first hoisting means 5. Lower end of the second hoisting means 6. Clump weight 7. Anti-twist framework 8. Anti-twist wire 9. Orientation wire 10. Support structure 11. First crane 11. Second crane 12. Crane block 12. First crane block 12. Second crane block 13. Front frame part 14. Back frame part 15. Front connection plate 15. Back connection plate 20. Connection point of the first hoisting means 20. Connection point of the second hoisting means 21. Connection point of the object 22. Connection point of the clump weight 23. Central part 24. Circumferential part 25. Connection means 26. Seabed 27. First cable 27. Second cable 28. Wind/wave direction 29. Vessel longitudinal axis (vessel's heading) 30. Rotational direction of first hoisting means 31. Rotational direction of second hoisting means 32. Object heading WL. Waterline FD. First depth S. Symmetry axis