Upending Device for Upending an Elongate Support Structure
20200023923 ยท 2020-01-23
Inventors
Cpc classification
Y02P70/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F05B2230/6102
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B63B77/10
PERFORMING OPERATIONS; TRANSPORTING
F03D13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B63B35/003
PERFORMING OPERATIONS; TRANSPORTING
F05B2240/95
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02B2017/0039
FIXED CONSTRUCTIONS
F05B2230/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B63B35/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to an offshore structure comprising an upending device for upending an elongate support structure from a substantially horizontal loading position on a deck of the offshore structure to a substantially vertical launch position outboard of the offshore structure. The upending device comprising a pivot axis situated near a side of the offshore structure for pivoting the upending device between the loading position and the launch position, a first end of the upending device having a connector member for pivotally connecting to the elongate support structure, the connector member in the launch position is in a position outboard from the side of the offshore structure, and a second end of the upending device is attached to a pulling device that is located on the deck of the offshore structure. The upending device is within reach of one or more hoisting means for lifting the elongate support structure.
Claims
1. An offshore structure (1) comprising: an upending device (3) for upending or decomissioning an elongate support structure (21) between a substantially horizontal loading position on a deck (2) of the offshore structure (1) and a substantially vertical launch position outboard of the offshore structure (1), said upending device (3) comprising: a pivot axis (P) situated near a side (2) of the offshore structure (1) for pivoting the upending device (3) between the loading position and the launch position; a first end (6) of the upending device (3) having a connector member (7) for pivotally connecting to the elongate support structure (21), wherein the connector member (7) in the launch position is outboard from the side (2) of the offshore structure (1); and a second end (10) of the upending device (3) being attached to a pulling device (11) that is located on of the offshore structure (1), the upending device (3) being within reach of one or more hoisting means (13) for lifting the elongate support structure (21).
2. The offshore structure (1) according to claim 1, wherein the one or more hoisting means (13) are configured as a crane.
3. The offshore structure (1) according to claim 1, the upending device (3) comprising: a carrier arm (4) with a pivot end (5) connected to the pivot axis (P), and a free end (6) with the connector member (7), the carrier arm (4) in the loading position extending from the pivot axis (P) to a position outboard from the side (2) of the offshore structure (1), and in the launch position extending from the pivot axis to a position outboard from the side (2) of the offshore structure (1); and a lever arm (8) with a first end (9) connected to the pivot end (5) of the carrier arm (4) and extending transversely thereto, the second end (10) of the upending device (3) being formed by a free end of the lever arm (8).
4. The offshore structure (1) according to claim 3, wherein in the launch position the carrier arm (4) extends from the pivot axis (P) in a downward direction.
5. The offshore structure (1) according to claim 3 or claim 4, wherein in the loading position, the carrier arm (4) extends substantially vertically and the lever arm (8) extends generally along the deck (2) of the offshore structure (1).
6. The offshore structure (1) according to any one of claims 3-5, the lever arm (8) in the loading position being supported near the pivot axis (P), on a vertical distance member (12) to be spaced from the deck (2).
7. The offshore structure (1) according to any one of claims 3-6, wherein the pulling device (11) is configured as a winch (11) situated near the pivot end (5) of the carrier arm (4), a cable (15) passing from a first sheave (14a) at the second end (10) of the lever arm to a second sheave (14b) on a deck position, which second sheave (14b) in the launch position is situated near the first sheave (14a) at the second end (10) of the lever arm (8), the cable (15) passing from the second sheave (14b) to the winch (11).
8. The offshore structure (1) according to claim 7, wherein the carrier arm (4), the lever (8) arm and the winch (11) are placed on a transport unit (16) which is displaceable along the side (2) of the offshore structure (1).
9. The offshore structure (1) according to any one of the preceding claims, comprising a pair of upending devices (3a, 3b) separated at a mutual distance (d), at least one of the upending devices (3a, 3b) being displaceable along the side (2) of the offshore structure (1).
10. Method for positioning an elongate support structure (21) between a substantially vertical position outboard of an offshore structure (1) and a substantially horizontal position on a deck (2) of the offshore structure (1), comprising the steps of: providing the support structure (21); connecting a top end (23) of the support structure (21) to a crane (13); connecting the support structure (21), to a pivoting connector (7) at a free end (6) of a carrier arm (4), the carrier arm (4) being with a pivot end (5), pivotally connected near a side (2) of the offshore structure (1), to be pivoted along a pivot axis (P) that extends along the side of the offshore structure (2); and moving the top end (23) of the support structure (21) relative to the side of the offshore structure (2) while pivoting the carrier arm (4) around the pivot axis (P).
11. Method according to claim 10, wherein the step of providing the support structure (21) comprises providing the support structure (21) in a substantially horizontal position on a deck (2) of the offshore structure (1); and the step of moving the top end (23) of the support structure (21) comprises lifting the top end (23) of the support structure (21) upward while pivoting the carrier arm (4) outboard from the offshore structure (1) around the pivot axis (P), until the support structure (21) is in a substantially vertical position and the carrier arm (4) extends in a substantially horizontal or downward direction.
12. Method according to claim 11, wherein the carrier arm (4) near the pivot end (5) is connected to a transverse lever arm (8), which with a second end (10) is connected to a winch (11), the method comprising the step of paying out the winch (11) while lifting the top end (23) of the support structure (21).
13. Method according to claim 10, wherein the step of providing the support structure (21) comprises providing the support structure (21) in a substantially vertical position outboard from the offshore structure (1); and the step of moving the top end (23) of the support structure (21) comprises lowering the top end (23) of the support structure (21) relative to the deck (2) of the offshore structure (1) while pivoting the carrier arm (4) onboard the offshore structure (1) around the pivot axis (P), until the support structure (21) is in a substantially horizontal position and the carrier arm (4) extends in a substantially vertical direction.
14. Method for moving an elongate support structure (21) between a substantially horizontal position on a deck (2) of an offshore structure (1) and a substantially vertical position outboard of the offshore structure (1), the method comprising: pivoting the support structure (21) about a first pivot (P, P1); and pivoting the support structure (21) about a second pivot (7, P2) positioned outboard of the first pivot (P, P1) with respect to the offshore structure (1).
15. Method according to claim 14, comprising connecting the support structure (21) to, or disconnecting the support structure (21) from, a pivoting connector (7) that defines the second pivot (7, P2).
16. Method according to claim 15, comprising lifting the support structure (21) to connect the support structure (21) to, or to disconnect the support structure (21) from, the pivoting connector (7).
17. Method according to claim 15 or claim 16, comprising pivoting the pivoting connector (7) about the first pivot (P, P1).
18. Method according to any of claims 14 to 17, comprising lifting an end of the support structure (21), inboard of the first pivot (P, P1), to effect pivotal movement of the support structure (21) about the first pivot (P, P1).
19. Method according to claim 18, wherein during pivotal movement of the support structure (21) about the first pivot (P, P1), the centre of gravity of the support structure (21) moves from a position inboard of the first pivot (P, P1) to a position outboard of the first pivot (P, P1).
20. Method according to claim 19, comprising constraining and controlling pivotal movement of the support structure (21) about the first pivot (P, P1) after the centre of gravity of the support structure moves outboard of the first pivot (P, P1).
21. Method according to any of claims 14 to 20, comprising pivoting the support structure (21) about the second pivot (7, P2) while also pivoting the support structure (21) about the first pivot (P, P1).
22. Method according to claim 15, comprising connecting the support structure (21) to the pivoting connector (7) or disconnecting the support structure (21) from the pivoting connector (7) by pivoting the support structure (21) about the first pivot (P, P1).
23. Method according to any of claims 14 to 16, wherein the first and second pivots (P, P1, P2) remain in fixed relation to the offshore structure (1).
24. Method according to claim 23, comprising moving the support structure (21) toward or away from the first pivot (P, P1) by pivoting the support structure (21) about the second pivot (7, P2).
25. Method according to claim 23 or claim 24, wherein the centre of gravity of the support structure (21) is outboard of the first pivot (P, P1) when the support structure (21) is in the substantially horizontal position.
26. Method according to any of claims 23 to 25, comprising supporting the support structure (21), when in the substantially horizontal position, by rigging (37) suspended from a crane (13) on the offshore structure (1), the rigging comprising upper and lower rigging portions (37a, 37b) that are connected respectively to upper and lower attachment points (39, 40) on the support structure (21).
27. Method according to claim 26, wherein when the support structure (21) is in the substantially horizontal position, the upper and lower attachment points (39, 40) are, respectively, inboard and outboard from a side (2) of the offshore structure (1).
28. Method according to claim 26 or claim 27, comprising transferring the rigging (37) from a boom (38) of the crane (13) to a hook (43) of the crane (13).
29. Method according to any of claims 26 to 28, comprising supporting the support structure (21) in an intermediate launch position by the lower rigging portion (37b) acting in tension between the crane (13) and the lower attachment point (40).
30. Method according to claim 29, wherein when the support structure (21) is in the launch position, the upper rigging portion (37a) is slack between the crane (13) and the upper attachment point (39).
31. Method according to any of claims 26 to 30, comprising supporting the support structure (21) in the substantially vertical position by the upper rigging portion (37a) acting in tension between the crane (13) and the upper attachment point (39).
32. Method according to claim 31, comprising disconnecting the lower rigging portion (37b) from the lower attachment point (40) and/or from the crane (13).
33. Method according to any of claims 14 to 32, comprising: pivoting the support structure (21) about a first pivot (P, P1) in a first pivoting direction; and pivoting the support structure (21) about a second pivot (7, P2) in a second pivoting direction, opposed to the first pivoting direction.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0027] The invention will be explained in more detail below with reference to drawings in which illustrative embodiments are shown. They are intended exclusively for illustrative purposes and not to restrict the inventive concept, which is defined by the appended claims.
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
DETAILED DESCRIPTION OF EMBODIMENTS
[0034]
[0035]
[0036] The upending device 3 has a carrier arm 4 with a pivot end 5 connected to be rotatable around the pivot axis P, and a free end 6 having a connector member 7 for pivotally connecting to the foundation 21. The connector member 7 in the launch position is in a position outboard from the side 2 of the vessel 1. In the loading position, the carrier arm 4 extends from the pivot axis P to a first position outboard from the side of the vessel 1. In the launch position the carrier arm 4 extends from the pivot axis P to a second position outboard from the side of the vessel 1. In an upended position, the carrier arm 4 extends from the pivot axis P in a downward direction.
[0037] The upending device 3 has a lever arm 8 with a first end 9 connected to the pivot end 5 of the carrier arm 4 and extending transversely thereto, and with a second end 10 that is attached to a pulling device 11 that is located nearby the upending device 3.
[0038] The pulling device 11 is configured as a winch situated near the pivot end 5 of the carrier arm 4, alternatively the winch can be situated at a distance from the upending device 3. A cable 15 passes from a first sheave 14a at the second end 10 of the lever arm 8 to a second sheave 14b on a deck position, which second sheave 14b that in the loading position is situated near the first sheave 14a at the second end 10 of the lever arm 8. The cable 15 further passes from the second sheave 14b to the winch 11.
[0039] Furthermore, near the pivot axis P, the lever arm 8 is supported by a vertical distance member 12 in the loading position.
[0040] The carrier arm 4, the lever arm 8 and the winch 11 may be placed on a transport unit 16 which is displaceable along the side 2 of the vessel 1.
[0041]
[0042]
[0043] In a first step of the method, the jacket 21a is provided in the loading position (see
[0044] In a second step of the method, the jacket 21a is upended by unwinding each winch 12 of the assembly 31 such that the assembly 31 is pivoted towards the upended position and lifting the top end 23 of the jacket 21a with the crane 13 such that the jacket 21a is kept free from the deck 2. In an intermediate position shown in
[0045] In a third step of the method, the jacket 21a is released by lifting the jacket 21a out of the connector members 7 and lowering the jacket 21a towards the sea bed.
[0046]
[0047]
[0048] In a first step of the method, the monopile 21b is provided in the monopile frame 22 in the loading position (see
[0049] In a fifth step of the method, the monopile 21b is released by lifting the monopile 21b out of the monopile frame 22 and lowering the monopile 21b towards the sea bed.
[0050]
[0051] During the upending method of this variant, the jacket 21a is upended from a loading position (shown in
[0052] The upending frame 33 projects outboard from the side 2 of the vessel 1 in use. The upending frame 33 is formed by a plurality of frame members 35, one of which supports a first pivot P1 that defines a first pivot axis about which the jacket 21a pivots during a step of the upending process. The upending frame 33 further includes a connector member 7 for pivotally connecting to the jacket 21a. The connector member 7 provides a second pivot P2 that defines a second pivot axis about which the jacket 21a pivots during a subsequent step of the upending process. When the upending frame 33 is installed for use as shown in
[0053] The method of upending the jacket 21a using the upending frame 33 of this embodiment will now be described with reference to
[0054] Referring first to
[0055] The crane 13 is connected to the jacket 21a at two positions along the length of the jacket 21a by means of rigging 37 suspended from a boom 38 of the crane 13. The rigging 37 includes an upper rigging portion 37a and a lower rigging portion 37b. The upper rigging portion 37a attaches to the jacket 21a at an upper attachment point 39 disposed on a cross brace of jacket 21a. The lower rigging portion 37b attaches to the jacket 21a at a lower attachment point 40 disposed on a leg 41 of the jacket 21a. The upper attachment point 39 is positioned on a central longitudinal axis 42 of the jacket 21a and the lower attachment point 40 is laterally offset from the central longitudinal axis 42. The upper attachment point 39 is positioned nearer to the top end 23 of the jacket 21a than the lower attachment point 40. Specifically, the upper attachment point 39 is positioned inboard of the side 2 of the vessel 1 and the lower attachment point 40 is positioned outboard of the side 2 of the vessel 1.
[0056] Referring now to
[0057] Referring now to
[0058] In a final step of the variant method, the upended jacket 21a is released from the upending frames 33 by lifting the jacket 21a out of the connector members 7 and lowering the jacket 21a beneath the surface.
[0059] It will be apparent to the skilled reader that the above steps may be reversed to bring a jacket 21a onboard the vessel 1 upon decommissioning.
[0060] 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.