EP0082161A1 - Arrangement for launching a rescue vessel. - Google Patents

Arrangement for launching a rescue vessel.

Info

Publication number
EP0082161A1
EP0082161A1 EP82901862A EP82901862A EP0082161A1 EP 0082161 A1 EP0082161 A1 EP 0082161A1 EP 82901862 A EP82901862 A EP 82901862A EP 82901862 A EP82901862 A EP 82901862A EP 0082161 A1 EP0082161 A1 EP 0082161A1
Authority
EP
European Patent Office
Prior art keywords
boom
arrangement according
axis
vessel
launching
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP82901862A
Other languages
German (de)
French (fr)
Other versions
EP0082161B1 (en
Inventor
Ola Kristoffer Dalsbo
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Publication of EP0082161A1 publication Critical patent/EP0082161A1/en
Application granted granted Critical
Publication of EP0082161B1 publication Critical patent/EP0082161B1/en
Expired legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B23/00Equipment for handling lifeboats or the like
    • B63B23/02Davits, i.e. devices having arms for lowering boats by cables or the like

Definitions

  • the invention relates to an arrangement for launching a rescue vessel from a ship or an offshore platform, herein the rescue vessel is suspended under a boom with one or more hoist carried wires. ore specifically,the invention relates to an arrangement of the kind described in the introductory part of claim 1.
  • the rescue vessel should be possible to launch the rescue vessel from a heeling ship or platform.lt should move the rescue vessel as far away from the side of the ship or platform as possible and preferabl turn the rescue vessel with the bow away from the ship or platform.
  • the release should be simple to have the rescue vessel launched with out assistance from any other than the operator responsible for the launching.
  • the arrangement should not require unnecessary valuable space,and should preferably be a unit which can be mounted on existi platforms and ships.
  • these objects may be acieved by an arrangement for launching fescue vessels as stated in the character ⁇ izing part of claim l. ith this arrangement,the rescue vessel will not only be launched in a relatively large distance from the plat ⁇ form or ship,but will also have the bow turned away from the hull. By adjustment of the first boom,the launching may be adapted to vari degrees of heeling,to have the rescue vessel always launched from a horizontal boom.
  • Figs. 1 and 2 show a front view and an view respectively of an arrang ment according to the invention carrying a life-boat
  • figs.3 and 4 show an upper plan view and an end view respectively of the arrangeme with the inner boom lowered
  • Figs.5 and 6 shows an upper plan view and an end view of the arrangement of fig.l,with both booms lowered respectively turned in operative position for launching
  • Fig.3 shows an embodyment of a hydraulic circuit suitable for controlling and operating the arrangement in the shown embody ⁇ ment structure.
  • the arrangement of the shown embodyment comprises an inner boom 11 and an outer boom 12.
  • the booms 11 and 12 are pivotable joined as described further below.
  • the inner boom 11 is carried by a mounting structure 13,to be pivotable around a horizontal axis 14 or an axis which can be placed in a horizontal position and which extends along the hull of the carrying ship.
  • the mounting structure 13 may be a part of the ship or of an offshore platform.
  • the inner boom 11 is preferably bifurcated or provided with two legs 15,each being pivotably linked to a lug 16 with a bolt 17,the lugs 16 being a part of the mounting structure 13.
  • the inner boom 11 is further connected to the mounting structure 13 by a hydraulic cylinder 18,being linked to an attachment 19 at the free end of the inner boom 11 and an attachment 20 at the mounting structure 13.
  • the control of the cylinder.18 with its piston is described further below.On extension of the cylinder, the inner boom 11 is pivoted from an upper position close to the mounting structure to a lower,protruding position as shown in Fig.4.
  • the second boom 12 is linked to the inner boom 11 to be pivotable around an axis 21 at the free end of the inner boom, generally perpendicularly to the length axis of both booms 11 and 12,and the axis 21 is also situated* in a plane perpendicul ⁇ arly to the axis 14.
  • the outer boom 12 is pivotable between an inner position (Figs.
  • the inner boom 11 may suitably be constructed as a box to have space available for the control gear described below,while the outer boom suitably is a truss beam or another suitable kind of beam.
  • the outer boom 12 carries a rescure vessel 23 by means of two wires 24 and 25.
  • the wires 24 and 25 are attached to the vessel in a ma known per se
  • the frires run from the vessel over an inner lead sheave 26 and an outer lead sheave 27 respectively,and from these onto a double winch drum 28 arranged on the inner boom 11, in the shown embodyment between the legs 15.
  • the sheaves 26 and 27 are attached to the outer boom 12 to allow pivoting of the rescue vessel 23 from the position shown in Fig.l wherein the wires 24 and 25 are extending substantially parallel to the inner boom 11, and to another end position as shown in Fig.6,being situated substantially 90° to the first. The importance of this will appear from the descriptions below.
  • the wires 24 and * 25 are carried by a double sheave 29 arranged adjacent to the axis 21 linking the booms 11 and 12.
  • the rescue vessel 24 In its inner position, the rescue vessel 24 will have its axis generally parallel to the side of the carrying structure 13 or part of it,which the lugs 16 are attached to.
  • the launching of the rescuej vessel 23 is effected in three phases From the start/position shown in Figs.1 and 2, he inner boom 11 is turned away from the carrying structure 13 and into the lower position shown in Figs.3 and 4. In this position,the inner boom 11 should be generally horizontal,even if the carrying vessel or platform is heeling. The attainment of this end position is effected by means of the control gear described below.
  • OMPI IPO ⁇ s the third and final phase of the lowering,the rescue vessel 23 is lowered by releasing the wires 24 and 25. It is convenient to design the attachment of the wires 24 and 25 to be automaticall released as the rescure vessel hits the sea.
  • the lowering can be effected without external power supply and a high degree of self control. This means that the lowering in high emergenc . can be effected quickly and safely , ithout risk for failure due to human errors or insufficienc ,e.g.due to reduced consciousness,lack of training etc.
  • Fig.7 an example of a control system for the embodyment above is shown.
  • the main narts in this system in addition to a winch motor 30 connected to the drum 28,are the cylinders 18 and 22. .
  • the cylinder 18 is over a release valve 31 connected to a pressure accumulator 32 and an oil reservoir 33.
  • the connection between the release -valve 31 and the accumulator 32 respectively the reservoir 33, is controlled by a three-way valve 34 maneuvered by a pendulum
  • the valve member 35 of the valve 34 is biased toward an end position connecting the cylinder 18 to the accumulator 32 and the oil reservoir 33.
  • the connection to the reservoir 33 is however controlled by a safety valve 36 opening when the pressure of the accumulator 32 exeeds a predetermind leve
  • the accumulator 32 is connected by the valve 34 operated by the pendulum to the cylinder 22,to effect outward movement of the pistonrod 37.
  • a choke valve 39 is arranged in the outled to give a predermined maximum lowering speed of the inner boom 11 at an expected weight of the rescue vessel 23
  • a choke valve 41 is arranged in the outlet pipe 40 of the cylinder 22 to the oil reservoir 33,to limit the speed of pivoting of the outer boom 12.
  • a one-way valve 43 is arranged in the supply ij EA o .P pipe 42 to the cylinder.
  • the valve 34 is designed to connect the accumulator 32 to the cylinder 22, hen the valve member 35 is moved from the shown neutral position into the second end position by a pendulum 44.
  • the pendulum 44 is journalled to effect switching of the valve 34 i.e. closing of the connection between the cylinder 18 and the accumulator 32 and opening of the connection between the accumula 32 and the cylinder 22 when the inner boom has reached a horizon position,independent of a heeling of the carrying structure 13.
  • the pressure side of the winch motor 33 on release of the wire 24 and 25 is connected to the oil reservoir 33 over a valve 45 which is opened when the outer boom 12 has reached its outer position.
  • This may be effected by an activator or a release member 46,in the shown embodyment attached to the piston rod 37of the cylin 22.
  • a choke valve 48 in the outlet pipe 47 of the winch moto 30 is inserted.
  • the winch motor 30 will act as a pump, powered by the force acting on the wires 24 and 25.
  • the lowering of the rescue vessel 23 thus is started by openin the valve 31 by an " operating handle 49.Then the pivoting down of th inner boom 11,the pivoting out of the outer boom 12 and the lowering of the rescue vessel 23 is effected as described above. Apart from the cylinders 18 and 22,the remaining parts of the control system of Fig.7 will suitably be arranged in the inner boom 11,e.g. in its box structure.
  • the operating handle 49 is convcnientlyarranged to be operated from the rescue vessel 23 in its start position as shown in Figs. 1 and 2.
  • the main advantage of the launching arrangement according to the invention is firstly that it carries the rescue vessel 23 relatively far away from the carrying structure 13,and secondly that it turncs the rescue vessel 23 to have its bow away from the carrying structure 13,ready to move, or be towed away from the platform or the vessel. This is a particular advantage in bad weather and unfavourable wind,when the rescue vessel is liable to be thrown against the carrying structure or adjoining parts.
  • the arrangement described above may be modified in various ways The most important relates • to the design of the inner boom. This may be shortened to reduce its contribution to the outward movement of the rescue vessel 23.
  • the basic principle is that it
  • O- PI can move the linkage of the outer boom 12,to have its pivoting axis 21 moved from a position in which the outer boom 12 is locke up into a position close to vertical.lt is particularly advantage ous to move the inner boom 11 to have the axis 21 pointing out ⁇ wardly in the upper end,from the platform or vessel.Thus the oute boom will be self pivoiting toward the outer position. The accumulator 32 and the cylinder 22 may then be delected,when this is allowed.
  • the winch arrangement may alternatively be positioned on the outer boom 12.On launching a rescue raft, the winch may be of modest size and only one wire may be sufficient.
  • the launching arrangement of the invention brings substantial advantages.lt assures a 90°turning of the rescue vessel,to make this ready for movement away from the platform or support vessel. This turning will also make ' the rescue vessel less inclin.ed to be thrown against the carrying structure.
  • the arrangement according to the invention allows launching al in a heeling situation and when the carrying structure is out of trim.
  • the inner boom 11 may be linked to be slightly pivotable around a central position,to have axis 14 horizontal,when the carrying vessel or the platform is ou of trim in either direction.
  • the launching arrangement according to the invention has a substantially larger extension than corresponding.This increase t safety of launching.particularly in bad weather and heeling condi The safety is also i ⁇ creasedue to the ⁇ circumstance of launching without external power supply.

Abstract

Agencement pour la mise à l'eau d'une embarcation de sauvetage à partir d'une plate-forme en mer ou d'un bateau. Le but est de mettre à l'eau l'embarcation de sauvetage aussi loin que possible depuis la structure portante, la proue de l'embarcation tournant le dos à cette structure. L'agencement comprend un premier mât intérieur (11) porté de manière pivotante autour d'un axe (14) positionné sensiblement horizontalement et perpendiculairement par rapport à l'axe longitudinal du mât intérieur (11), et un mât extérieur (12) porté de manière pivotante par le mât intérieur (11), avec un axe pivotant (21) sensiblement perpendiculaire aux axes longitudinaux des deux mâts. Les câbles portants (24, 25) sont suspendus depuis le mât extérieur.Arrangement for launching a lifeboat from an offshore platform or a boat. The goal is to launch the lifeboat as far as possible from the carrying structure, with the bow of the lifeboat turned away from the structure. The arrangement comprises a first inner mast (11) pivotally carried around an axis (14) positioned substantially horizontally and perpendicular to the longitudinal axis of the inner mast (11), and an outer mast (12) carried pivotally by the inner mast (11), with a pivoting axis (21) substantially perpendicular to the longitudinal axes of the two masts. The supporting cables (24, 25) are suspended from the outer mast.

Description

Arrangement for launching a rescue vessel.
The invention relates to an arrangement for launching a rescue vessel from a ship or an offshore platform, herein the rescue vessel is suspended under a boom with one or more hoist carried wires. ore specifically,the invention relates to an arrangement of the kind described in the introductory part of claim 1.
For such an arrangement to function properly,it has to fullfill various requirements.The launching should be possible from a dead sh or platform as the power supply may be failing in an emergency state It thus has to function without external supply of power,i.e.by mean of the energy available in the arrangement itself.
Further it should be possible to launch the rescue vessel from a heeling ship or platform.lt should move the rescue vessel as far away from the side of the ship or platform as possible and preferabl turn the rescue vessel with the bow away from the ship or platform. The release should be simple to have the rescue vessel launched with out assistance from any other than the operator responsible for the launching.The arrangement should not require unnecessary valuable space,and should preferably be a unit which can be mounted on existi platforms and ships.
According to the invention these objects may be acieved by an arrangement for launching fescue vessels as stated in the character¬ izing part of claim l. ith this arrangement,the rescue vessel will not only be launched in a relatively large distance from the plat¬ form or ship,but will also have the bow turned away from the hull. By adjustment of the first boom,the launching may be adapted to vari degrees of heeling,to have the rescue vessel always launched from a horizontal boom.
In the subclai s 2-10,various advantageous features of the arrange ment according to the main claim are stated.These features will contribute to the favorable properties of the arrangement.This will be further described with reference to an example of an embodyment shown in the drawings:
Figs. 1 and 2 show a front view and an view respectively of an arrang ment according to the invention carrying a life-boat,figs.3 and 4 show an upper plan view and an end view respectively of the arrangeme with the inner boom lowered, Figs.5 and 6 shows an upper plan view and an end view of the arrangement of fig.l,with both booms lowered respectively turned in operative position for launching, while Fig.3 shows an embodyment of a hydraulic circuit suitable for controlling and operating the arrangement in the shown embody¬ ment structure.
The arrangement of the shown embodyment comprises an inner boom 11 and an outer boom 12.The booms 11 and 12 are pivotable joined as described further below.
The inner boom 11 is carried by a mounting structure 13,to be pivotable around a horizontal axis 14 or an axis which can be placed in a horizontal position and which extends along the hull of the carrying ship.The mounting structure 13 may be a part of the ship or of an offshore platform.
The inner boom 11 is preferably bifurcated or provided with two legs 15,each being pivotably linked to a lug 16 with a bolt 17,the lugs 16 being a part of the mounting structure 13.
The inner boom 11 is further connected to the mounting structure 13 by a hydraulic cylinder 18,being linked to an attachment 19 at the free end of the inner boom 11 and an attachment 20 at the mounting structure 13.The control of the cylinder.18 with its piston is described further below.On extension of the cylinder, the inner boom 11 is pivoted from an upper position close to the mounting structure to a lower,protruding position as shown in Fig.4.
The second boom 12 is linked to the inner boom 11 to be pivotable around an axis 21 at the free end of the inner boom, generally perpendicularly to the length axis of both booms 11 and 12,and the axis 21 is also situated* in a plane perpendicul¬ arly to the axis 14.
The outer boom 12 is pivotable between an inner position (Figs.
1 and 3) , herein it has its length axis generally perpendicularly to the inner boom 11,and an outer position (Figs.5 and 6) in the same a power cylinder
22 which is linked between the booms 11 and 12 outside the pivoting axis 21.The control of the power cylinder 22 will be further des- cribed below.
The inner boom 11 may suitably be constructed as a box to have space available for the control gear described below,while the outer boom suitably is a truss beam or another suitable kind of beam.
The outer boom 12 carries a rescure vessel 23 by means of two wires 24 and 25. The wires 24 and 25 are attached to the vessel in a ma known per se The frires run from the vessel over an inner lead sheave 26 and an outer lead sheave 27 respectively,and from these onto a double winch drum 28 arranged on the inner boom 11, in the shown embodyment between the legs 15.The sheaves 26 and 27 are attached to the outer boom 12 to allow pivoting of the rescue vessel 23 from the position shown in Fig.l wherein the wires 24 and 25 are extending substantially parallel to the inner boom 11, and to another end position as shown in Fig.6,being situated substantially 90° to the first.The importance of this will appear from the descriptions below.
The wires 24 and* 25 are carried by a double sheave 29 arranged adjacent to the axis 21 linking the booms 11 and 12.
In its inner position,the rescue vessel 24 will have its axis generally parallel to the side of the carrying structure 13 or part of it,which the lugs 16 are attached to.
Launching.
The launching of the rescuej vessel 23 is effected in three phases From the start/position shown in Figs.1 and 2, he inner boom 11 is turned away from the carrying structure 13 and into the lower position shown in Figs.3 and 4. In this position,the inner boom 11 should be generally horizontal,even if the carrying vessel or platform is heeling.The attainment of this end position is effected by means of the control gear described below.
Subsequent to the pivoting down of the inner boom 11,the pivoting of the outer boom 12 starts,the axis 21 being substantiall vertically or inclined outwardly in the upper part.At the end of the pivoting movement,the booms 11 and 12 extend in the same direction.This is shown in Figs.5 and 6.
OMPI IPO Λs the third and final phase of the lowering,the rescue vessel 23 is lowered by releasing the wires 24 and 25. It is convenient to design the attachment of the wires 24 and 25 to be automaticall released as the rescure vessel hits the sea.
As will appear from the description of the control system below the lowering can be effected without external power supply and a high degree of self control.This means that the lowering in high emergenc .can be effected quickly and safely , ithout risk for failure due to human errors or insufficienc ,e.g.due to reduced consciousness,lack of training etc.
Il2§_ 2S l2-_§Z§J:-:*]J
In Fig.7 an example of a control system for the embodyment above is shown.The main narts in this system, in addition to a winch motor 30 connected to the drum 28,are the cylinders 18 and 22. .
The cylinder 18 .is over a release valve 31 connected to a pressure accumulator 32 and an oil reservoir 33.The connection between the release -valve 31 and the accumulator 32 respectively the reservoir 33, is controlled by a three-way valve 34 maneuvered by a pendulum The valve member 35 of the valve 34 is biased toward an end position connecting the cylinder 18 to the accumulator 32 and the oil reservoir 33.The connection to the reservoir 33 is however controlled by a safety valve 36 opening when the pressure of the accumulator 32 exeeds a predetermind leve
The accumulator 32 is connected by the valve 34 operated by the pendulum to the cylinder 22,to effect outward movement of the pistonrod 37.
To brake the movement of the rod 38 of the cylinder 18,a choke valve 39 is arranged in the outled to give a predermined maximum lowering speed of the inner boom 11 at an expected weight of the rescue vessel 23
Correspondingly a choke valve 41 is arranged in the outlet pipe 40 of the cylinder 22 to the oil reservoir 33,to limit the speed of pivoting of the outer boom 12.
To avoid return movement of the outer boom 12 when the lowering has started,a one-way valve 43 is arranged in the supply ij EA o .P pipe 42 to the cylinder. * *
The valve 34 is designed to connect the accumulator 32 to the cylinder 22, hen the valve member 35 is moved from the shown neutral position into the second end position by a pendulum 44. The pendulum 44 is journalled to effect switching of the valve 34 i.e. closing of the connection between the cylinder 18 and the accumulator 32 and opening of the connection between the accumula 32 and the cylinder 22 when the inner boom has reached a horizon position,independent of a heeling of the carrying structure 13.
The pressure side of the winch motor 33 on release of the wire 24 and 25 is connected to the oil reservoir 33 over a valve 45 which is opened when the outer boom 12 has reached its outer position.This may be effected by an activator or a release member 46,in the shown embodyment attached to the piston rod 37of the cylin 22.To have the lowering of the rescue vessel 23 controlled it is inserted a choke valve 48 in the outlet pipe 47 of the winch moto 30.During the lowering the winch motor 30 will act as a pump, powered by the force acting on the wires 24 and 25.
The lowering of the rescue vessel 23 thus is started by openin the valve 31 by an"operating handle 49.Then the pivoting down of th inner boom 11,the pivoting out of the outer boom 12 and the lowering of the rescue vessel 23 is effected as described above. Apart from the cylinders 18 and 22,the remaining parts of the control system of Fig.7 will suitably be arranged in the inner boom 11,e.g. in its box structure.The operating handle 49 is convcnientlyarranged to be operated from the rescue vessel 23 in its start position as shown in Figs. 1 and 2.
The main advantage of the launching arrangement according to the invention, is firstly that it carries the rescue vessel 23 relatively far away from the carrying structure 13,and secondly that it turncs the rescue vessel 23 to have its bow away from the carrying structure 13,ready to move, or be towed away from the platform or the vessel.This is a particular advantage in bad weather and unfavourable wind,when the rescue vessel is liable to be thrown against the carrying structure or adjoining parts.
The arrangement described above may be modified in various ways The most important relates to the design of the inner boom. This may be shortened to reduce its contribution to the outward movement of the rescue vessel 23.The basic principle is that it
O- PI can move the linkage of the outer boom 12,to have its pivoting axis 21 moved from a position in which the outer boom 12 is locke up into a position close to vertical.lt is particularly advantage ous to move the inner boom 11 to have the axis 21 pointing out¬ wardly in the upper end,from the platform or vessel.Thus the oute boom will be self pivoiting toward the outer position.The accumulator 32 and the cylinder 22 may then be delected,when this is allowed.
The winch arrangement may alternatively be positioned on the outer boom 12.On launching a rescue raft, the winch may be of modest size and only one wire may be sufficient.
The launching arrangement of the invention brings substantial advantages.lt assures a 90°turning of the rescue vessel,to make this ready for movement away from the platform or support vessel. This turning will also make' the rescue vessel less inclin.ed to be thrown against the carrying structure.
The arrangement according to the invention allows launching al in a heeling situation and when the carrying structure is out of trim.To cope with the last possibility the inner boom 11 may be linked to be slightly pivotable around a central position,to have axis 14 horizontal,when the carrying vessel or the platform is ou of trim in either direction.
The launching arrangement according to the invention has a substantially larger extension than corresponding.This increase t safety of launching.particularly in bad weather and heeling condi The safety is also iήcreasedue to the ^circumstance of launching without external power supply.

Claims

Claimes:
1. Arrangement for launching a rescue vessel from an offshore platform or a vessel,wherein the rescue vessel is carried in a boom by one or more wLhchborn ' wires,the boom being pivotable to move the rescue vessel from a storage position into a launching position c h a r a c t e r i z e d in that it comprises an inner boom (11) carried pivotable around a substantially horizontal or horizontally adjustable axis (14),and a second boom (12) ,which is pivotable attach to the inner boom (11),to enable a substantial vertically positioning of the pivoting axis between the inner boom (11) and the outer boom ( independently of the heeling of the platform or the carrying vessel.
2. Arrangement according to claim l, c h r a c t e r i z e d in that the axis (21) between the inner and the outer boom is sitated in a plane perpendicular to the carrying axis (14) of the inner boom.
3. Arrangement according to claim 1 or 2, c h a r a c t e r i- *z e d in that the inner carrier (11) is box shaped to give space to operating gear.
4. Arrangement according to one of the claims 1-3, it .is provided with means,perferably a hydralic cylinder (18) , ith a choking valve (39) in the outlet, to lower the inner carrying boom (11) around its carrying axis (14) . *
5. Arrangement according to claim 4, c h a r a c t e r i z e d in that the hydraulic cylinder (18) is arranged to move the inner boom (11) to a upright,outward inclined position of its pivoting axis (21) for the outer boom (12),to make the outer boom self extending to a turned out position.
6. Arrangement according to claim -ι or 5, c h a r a c t e r i z e d in that the hydraulic cylinder (18) or simil power member,is connected to a pressure accumulator (32) to store a part of the energy released at the lowering of the inner boom (11) , to provide energy to pivot the outer boom (12) from an inturned to an outturned position.
7. Arrangement according to one of the claimes 1-6, c h a r a c t e r i z e d in that the outer boom is provided with means, referably a hydraulic cylinder (22) to be pivoted from an inturned to a launching position.
8. Arrangement according to claim 6, c h a r a c t e r i z e d in that the transfer of pressure fluid from the accumulator (32) to the cylinder (22) is governed by a pendulum operated valve (34) opening for the operation of cylinder (22) extending its piston ro (21) is in a substantially upright position.
9. Arrangement according to one of the claimes 1-8, c h a r a c t e r i z e d in that it is provided with means (45,46 allowing pump operation o-F the winch motor (30) when the outer boom is in its outer extended position.
10. Arrangement according one of the claimes 1-9, c h a r a c t e r i z e d in that the rescue vessel is carried by one wire supported by a winch arranged on the outer boom.
EP82901862A 1981-06-24 1982-06-23 Arrangement for launching a rescue vessel Expired EP0082161B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NO812152 1981-06-24
NO812152A NO149990C (en) 1981-06-24 1981-06-24 CRANE FOR EXPOSURE OF LIFE BATHS AND SURFACES.

Publications (2)

Publication Number Publication Date
EP0082161A1 true EP0082161A1 (en) 1983-06-29
EP0082161B1 EP0082161B1 (en) 1986-01-22

Family

ID=19886139

Family Applications (1)

Application Number Title Priority Date Filing Date
EP82901862A Expired EP0082161B1 (en) 1981-06-24 1982-06-23 Arrangement for launching a rescue vessel

Country Status (10)

Country Link
EP (1) EP0082161B1 (en)
JP (1) JPS58500990A (en)
BR (1) BR8207765A (en)
DE (1) DE3268652D1 (en)
DK (1) DK80083D0 (en)
FI (1) FI75313C (en)
IE (1) IE830234L (en)
NO (1) NO149990C (en)
SU (1) SU1256697A3 (en)
WO (1) WO1983000036A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD918666S1 (en) 2017-10-30 2021-05-11 Yeti Coolers, Llc Backpack cooler

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SE446173B (en) * 1982-07-01 1986-08-18 Tell Nico Ab Von DEVICE FOR OFFSHORE PLATFORM Dedicated Rescue Cabin
RU2740323C1 (en) * 2020-05-12 2021-01-13 Федеральное государственное унитарное предприятие "Крыловский государственный научный центр" Crew rescue facility lifeboat launching device

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR858380A (en) * 1939-04-24 1940-11-23 Venot & Cie Improvements made to lifting or launching devices for loads floating on the sea
NO132309C (en) * 1973-09-04 1975-10-22 Odd S Simonsen

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO8300036A1 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD918666S1 (en) 2017-10-30 2021-05-11 Yeti Coolers, Llc Backpack cooler

Also Published As

Publication number Publication date
FI75313C (en) 1988-06-09
DK80083A (en) 1983-02-23
BR8207765A (en) 1983-05-31
NO149990C (en) 1984-08-01
DE3268652D1 (en) 1986-03-06
NO149990B (en) 1984-04-24
NO812152L (en) 1982-12-27
FI75313B (en) 1988-02-29
SU1256697A3 (en) 1986-09-07
IE830234L (en) 1984-08-07
WO1983000036A1 (en) 1983-01-06
DK80083D0 (en) 1983-02-23
JPS58500990A (en) 1983-06-23
FI830594A0 (en) 1983-02-23
EP0082161B1 (en) 1986-01-22

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