SYSTEM FOR RECOVERING A SURFACE MARINE CRAFT FROM A CARRIER SHIP
20220212760 · 2022-07-07
Inventors
Cpc classification
B63B23/48
PERFORMING OPERATIONS; TRANSPORTING
B63B19/08
PERFORMING OPERATIONS; TRANSPORTING
B63B2027/165
PERFORMING OPERATIONS; TRANSPORTING
B66C13/02
PERFORMING OPERATIONS; TRANSPORTING
B63B27/36
PERFORMING OPERATIONS; TRANSPORTING
B63B23/60
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Disclosed is a system for the recovery of a surface marine craft by a carrier ship. The system included a lifting device with which the carrier ship is intended to be equipped and which included a lifting unit of the davit type, equipped with a lifting cable including, at one end, a connection interface, a pole bearing a guide cable, an anchor connected to one end of the guide cable, the connection interface for the lifting cable being coupled removably to the anchor, and a hauling cable. The system also included a receiving device with which the marine craft is intended to be equipped, the receiving device including a forward module.
Claims
1. System for the recovery of a surface marine craft by a carrier ship, said system comprising: a) a lifting device intended to equip the carrier ship and which comprises: a lifting means of the davit type, equipped with a lifting cable comprising at one end a connection interface, a boat hook pole intended to extend laterally outside a hull of the carrier ship, above the carrier ship's waterline, a guide cable being suspended from said boat hook pole, an anchor connected to a free end of said guide cable, said guide cable being dimensioned so that, when the anchor is suspended from the boat hook pole by the guide cable, in the absence of other constraints, the anchor is below the waterline of the carrier ship, the connection interface of the lifting cable being detachably connected to the anchor, and a towing cable, intended to be connected both to the carrier ship forward of the boat hook pole, and also to the anchor, b) a receiving device suitable for cooperating with the lifting device and intended to equip the marine craft, the receiving device comprising: a forward module, intended to equip the prow of the marine craft, comprising an opening configured to receive jointly the guide cable and the lifting cable, and to allow said guide cable and lifting cable freedom in translation in said opening, and comprising a receiving housing suitable for receiving a part of the anchor by which the anchor fastens to said forward module when said part is engaged in said housing, fastening of the anchor to the forward module leading to fastening of the connection interface of the lifting cable to a handle detachably connected to the forward module, and a lifting support, intended to be fastened rigidly at at least one lifting point of the marine craft, said lifting support being shaped to receive and immobilize the handle.
2. The system according to claim 1, in which the lifting cable comprises an end portion fastened detachably to the guide cable so as to facilitate jointly receiving said guide cable and lifting cable in the opening of the forward module.
3. The system according to claim 1, also comprising a winch on which the towing cable is wound so as to vary the length of the towing cable outside the hull of the carrier ship.
4. The system according to claim 1, in which the anchor comprises an arm by way of part by which the anchor is fastened to the forward module, said arm being substantially oriented towards the surface of the water when the anchor is suspended by the guide cable, in the absence of other constraints, and submerged.
5. The system according to claim 1, in which the receiving device also comprises two guide bars articulated on the forward module, said bars being able to pivot from a folded position to a deployed position in which they form a guide, converging towards said forward module.
6. The system according to claim 1, in which the handle and the lifting support have corresponding shapes, such that the handle is immobilized with respect to the lifting support when the lifting cable, which was fastened to the handle via the connection interface, is tensioned.
7. The system according to claim 1, comprising a tension roller close to the lifting support, the tension roller comprising a handling cable connected to the handle, take-up of the handling cable making it possible to bring the handle from the forward module to the lifting support.
8. Ensemble comprising a carrier ship and a surface marine craft comprising a system according to claim 1, the lifting device equipping the carrier ship and the receiving device equipping the marine craft.
9. The ensemble according to claim 8, in which the marine craft is a small craft of the semi-rigid hull type.
10. Method for the recovery of a marine craft equipped with a device for receiving by a carrier ship equipped with a lifting device, said receiving device and lifting device forming a recovery system according to claim 1, said method comprising the steps of: launching the anchor connected to the guide cable and to the traction cable, the connection interface of the lifting cable being connected to said anchor; receiving in the opening of the receiving device, the guide cable and the lifting cable; bringing the anchor against the forward module and engaging in the housing of the forward module the part of the anchor intended to be received therein, leading to the fastening of the anchor to the forward module and the fastening of the connecting interface of the lifting cable to the handle; separating the handle with respect to the anchor, the marine craft remaining guided by the guide cable and towed by the towing cable, fastening the handle to the lifting support, lifting the marine craft by the lifting cable, placing the marine craft on a deck of the carrier ship using the lifting means of the davit type.
11. The system according to claim 2, also comprising a winch on which the towing cable is wound so as to vary the length of the towing cable outside the hull of the carrier ship.
12. The system according to claim 2, in which the anchor comprises an arm by way of part by which the anchor is fastened to the forward module, said arm being substantially oriented towards the surface of the water when the anchor is suspended by the guide cable, in the absence of other constraints, and submerged.
13. The system according to claim 3, in which the anchor comprises an arm by way of part by which the anchor is fastened to the forward module, said arm being substantially oriented towards the surface of the water when the anchor is suspended by the guide cable, in the absence of other constraints, and submerged.
14. The system according to claim 2, in which the receiving device also comprises two guide bars articulated on the forward module, said bars being able to pivot from a folded position to a deployed position in which they form a guide, converging towards said forward module.
15. The system according to claim 3, in which the receiving device also comprises two guide bars articulated on the forward module, said bars being able to pivot from a folded position to a deployed position in which they form a guide, converging towards said forward module.
16. The system according to claim 4, in which the receiving device also comprises two guide bars articulated on the forward module, said bars being able to pivot from a folded position to a deployed position in which they form a guide, converging towards said forward module.
17. The system according to claim 2, in which the handle and the lifting support have corresponding shapes, such that the handle is immobilized with respect to the lifting support when the lifting cable, which was fastened to the handle via the connection interface, is tensioned.
18. The system according to claim 3, in which the handle and the lifting support have corresponding shapes, such that the handle is immobilized with respect to the lifting support when the lifting cable, which was fastened to the handle via the connection interface, is tensioned.
19. The system according to claim 4, in which the handle and the lifting support have corresponding shapes, such that the handle is immobilized with respect to the lifting support when the lifting cable, which was fastened to the handle via the connection interface, is tensioned.
20. The system according to claim 5, in which the handle and the lifting support have corresponding shapes, such that the handle is immobilized with respect to the lifting support when the lifting cable, which was fastened to the handle via the connection interface, is tensioned.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0037] In the attached drawings, given by way of non-limitative examples:
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0059]
[0060] The marine craft 4 shown here is a boat with a semi-rigid hull, capable of forming part of the davit craft of the carrier ship 1.
[0061] In order to launch the marine craft 4 and recover it, the carrier ship comprises a davit 5, the end of which can be positioned overhanging the hull 6 of the carrier ship. This makes it possible to lift or lower the marine craft 4 along the hull 6, by virtue of a lifting cable 7 connected to the davit 5. The lifting cable can in particular be unwound outside the carrier ship 1 to lower the marine craft 4 or wound in the carrier ship 1 so as to lift the marine craft 4, for example using a pulley hoist.
[0062] The lifting cable 7 is connected for this purpose to a lifting point of the marine craft, which is formed by an element suitable for bearing the weight of the marine craft and its occupants, if applicable, and which is positioned at a lifting point 8 making it possible to suspend the marine craft on an even keel, substantially flat. The lifting point is thus substantially in the vertical axis of the centre of mass of the marine craft. During lifting of the marine craft, one or more boat ropes make it possible to control the orientation of the marine craft suspended from the davit.
[0063] Of course, the lifting point can be formed based on a set of straps or ropes connected at several points of the marine craft, and the invention that is described hereinafter is applicable to such a configuration. For the sake of simplicity, it is assumed that the lifting point is a single point, forming part of the marine craft 4.
[0064] Similarly, both the prior art and a system according to the invention are shown in the present document with reference to a system comprising a single davit, but it is clear that the invention can be applied to a system with multiple arms.
[0065] The device shown in
[0066] Moreover, the invention is described hereinafter on the basis of a lifting device comprising a davit per se. The invention can more generally utilize a lifting means “of the davit type”, i.e. a davit per se or an equivalent lifting device, overhanging the hull of a carrier ship, for example a crane in a similar configuration to that of a davit.
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[0068] The system in
[0069] The length of the guide cable 10 can be fixed or adjustable. A guide cable 10 of adjustable length, for example using an on-board winch in the carrier ship 1, makes it possible for example to adapt the length of said guide cable 10 to the level of sea swell. The anchor 11 can consist of a massive element, for example made from metal. The anchor 11 can comprise hydrodynamic planes that orient the anchor in a predefined position when the carrier ship 1 moves ahead.
[0070] The free end of the lifting cable 7 is fastened detachably to the anchor 11. Moreover, an end portion of said lifting cable 7 is fastened detachably to the guide cable 10, so that, from the anchor 11 to a given point of the guide cable, situated between the anchor 11 and the boat hook pole 9, the lifting cable 7 follows the guide cable 10. On this portion, the lifting cable 7 and the guide cable 10 thus form only a single elongated assembly.
[0071] The lifting device also comprises a towing cable 12. The towing cable 12, equivalent to a boat rope used in the known devices, is connected to the carrier ship 1 at a point of the hull 6 situated forward of the davit 5 and forward of the boat hook pole 9.
[0072] The concepts of forward and aft are understood, in the whole of the present document, in the usual manner, i.e. along the axis linking the prow of a boat and corresponding to “forward”, to the stern or to the transom of the boat and corresponding to “aft”. The towing cable 12, by its orientation makes it possible, when it is connected to a surface marine craft that must be recovered by the carrier ship 1, to tow the marine craft and to hold it longitudinally in position with respect to the carrier ship 1.
[0073] The system in
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[0081] By “variable length of a cable” is meant that the free part of the cable is variable in length, typically the length of the lifting cable 7 between the davit 5 and its free end, the length of the guide cable between the boat hook pole 9 and the anchor 11, the length of the traction cable 12 between the hull 6 of the carrier ship and the anchor 11.
[0082] The lifting device in
[0083] The guide cable 10 can be equipped with a float or a buoy 16.
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[0085] A recovery sequence of the marine craft 4, typically corresponding to the marine craft in
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[0087] In the state shown in
[0088] In the retracted position, also called “passive” position, the bars 17 can substantially hug the shape of the (rigid or inflatable) hull of the marine craft 4. In the deployed position, also called “active” position, the bars 17 are oriented substantially in a V-shape with respect to one another, preferably symmetrically with respect to a longitudinal plane of symmetry of the marine craft (if the marine craft is symmetrical). The bars 17 extend overhanging the bow of the marine craft 4 substantially horizontally (parallel to the surface of the water), and form an angle between them in order to allow the recovery and guiding towards the forward module 13 of any substantially vertical cable or element entering between them.
[0089] Of course, other configurations of the forward module can be used, according to various variant embodiments of the invention, so as to form a convergent guide, in particular with fixed or mobile bars, in planes other than the horizontal plane. The bars 17 can be incurved (for example to hug the shape of the forward hull of the marine craft). The means allowing a cable or rope to be received at the level of the prow of the marine craft can have shapes other than two bars; it can be in one piece or otherwise be formed from several elements capable of unfolding to form a guide. The movement of the bars 17, or of any other means allowing a cable to receive at the bow of the marine craft, can be automatic (motorized) or manual.
[0090] In the example shown, the marine craft 4 is then manoeuvred to bring the guide cable 10 facing the branches 17, within the angle that they form.
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[0092] In position a, the guide bars 17 come into abutment against the guide cable 10 and the lifting cable 7, due to the forward movement of the marine craft 4. By converging towards the forward module 13, the bars 17 guide the guide cable 10 and the lifting cable 7 towards a trigger 18, on which the guide cable 10 and the lifting cable 7 press so as to actuate it in rotation (position b in
[0093] The guide cable 10 and the lifting cable 7 then enter an opening 19 formed in the forward module 13. Once the trigger 18 is free from the guide cable 10 and the lifting cable 7, it closes again so as to prevent the guide cable 10 and the lifting cable 7 from coming out of the opening 19. The guide cable 10 and the lifting cable 7 can nevertheless move freely in vertical translation in the opening 19. This position corresponds to the position c shown in
[0094] At this stage, the traction cable is loose, and applies no significant force on the marine craft 4.
[0095] In the step shown in
[0096] Astern movement of the marine craft can be achieved by decreasing speed, to a speed lower than that of the carrier boat, for example.
[0097] The system shown here comprises a guide cable of fixed length. As an alternative or in addition, the guide cable can be of variable length, for example adjustable with the use of a winch, to cause the guide cable to be raised into the opening 19 of the forward module 13.
[0098] In the step shown in
[0099] The part of the anchor 11 to which the connecting interface 14 of the lifting cable is connected, which here has the shape of a hook, is introduced into the opening 19 of the forward module 13. This positions the hook facing a handle 21, shown in
[0100] The winch of the davit 5 is actuated, which reduces the length of the lifting cable 7. The shortening of the lifting cable 7 starts to cause its separation from the guide cable 10, as shown in
[0101] The connection means 15 progressively release the lifting cable 7 until it is completely separated from the guide cable 10.
[0102] The handle 21 is furthermore connected by a cable to a winch situated close to the lifting point 8 of the marine craft 4.
[0103] Traction of the lifting cable 7 on the handle 21 and/or the actuation of the winch situated close to the lifting point 8 releases the handle 21 of the forward module 13. Take-up of the cable connecting the handle to the winch situated close to the lifting point 8 brings said handle 21 towards the lifting point 8. This step is shown in
[0104] In this situation, the towing cable 12 ensures that the marine craft is held longitudinally with respect to the carrier boat. The guide cable 10 essentially ensures that it is held laterally, at its prow level.
[0105] When the handle reaches the lifting point 8, it is fastened to a lifting support that is arranged at this point, automatically (for example as explained with reference to
[0106] The marine craft 4 can then be lifted, hoisted out of the water by the lifting cable 7. More precisely, the connection interface 14 (for example in the form of a hook) of the lifting cable is engaged with the handle 21 which is fastened to the lifting support. This step is shown in
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[0109] In
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[0113] As shown in
[0114] The system thus developed in the invention allows the recovery of a surface marine craft from a carrier boat. It can be used both for piloted marine craft and for crewless remotely operated or autonomous marine craft. Moreover, recovery of the marine craft can be carried out in a moderate sea, typically up to a sea state of level 4 or 5 according to the Douglas scale. The invention is based on a lifting means of the conventional davit type, which limits its cost, facilitates its utilization, and makes it possible to adapt the system to a pre-existing davit.