CN103231786A - Offshore platform - Google Patents

Offshore platform Download PDF

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Publication number
CN103231786A
CN103231786A CN 201310103967 CN201310103967A CN103231786A CN 103231786 A CN103231786 A CN 103231786A CN 201310103967 CN201310103967 CN 201310103967 CN 201310103967 A CN201310103967 A CN 201310103967A CN 103231786 A CN103231786 A CN 103231786A
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CN
China
Prior art keywords
buoyancy aid
module buoyancy
module
weighing apparatus
hole
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Pending
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CN 201310103967
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Chinese (zh)
Inventor
丛飞
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Individual
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Individual
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Priority to CN 201310103967 priority Critical patent/CN103231786A/en
Publication of CN103231786A publication Critical patent/CN103231786A/en
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Abstract

The invention relates to an offshore platform. The offshore platform comprises a plurality of unit module floating bodies which are made from composite materials and formed by a die, connection ropes, cable clamps and rubber buffer steady connection rods, wherein butting zones are arranged on the module floating bodies respectively; connection holes are formed in the butting zones respectively; two ends of the connection holes are cone-shaped; cone-shaped rubber blankets are arranged in the two ends of the connection holes; buffer steady holes are formed in the side ends of the module floating bodies respectively, the butting zones of the module floating bodies are connected in a matched manner; the rubber buffer steady connection rods are arranged in the buffer steady holes of two adjacent module floating bodies; the connection ropes penetrate the connection holes in the butting zones of the module floating bodies; the cable clamps are arranged at the ends of the connection ropes; and cable clamps are arranged on the connection ropes between the module floating bodies, so that a floating platform is formed. The offshore platform has the advantages of reasonable design, simple structure, convenience in manufacture, low cost, easiness in assembly, high intensity in connection, reliability in performance and good weather resistance, can keep balanced and stable permanently offshore, and is movable.

Description

A kind of offshore platform
Technical field
The present invention relates to the technical field of buoyancy aid waterborne, a kind of offshore platform specifically, good weatherability, can keep balance, steadily for a long time at sea, and buoyancy aid platform movably.
Background technology
Along with greatly developing of marine economy, various above water platforms also are born in succession.Above water platform is substantially with the rubber-plastics material casting, because volume is little, buoyancy is just not enough, adds the undercapacity of each side again, so can only use at the water surface of calmness, cannot at sea contend with wave at all.In the afloat heavy construction, must there be platform to construct, builds its cost height of interim small-sized platform.At present, there is not the macrotype platform that can use for a long time at sea.China is an ocean big country, and wide ocean area is arranged, and people are thirsting for utilizing the ocean to develop the economy more, and offshore platform can become the expanding economy platform, and it will be to the people's livelihood and national defense construction performance big effect emphatically.
Summary of the invention
The objective of the invention is in order to solve the deficiency of above-mentioned technology, provide a kind of reasonable in design, simple in structure, cost is low, can resist the offshore platform of stormy waves, safety and steady at sea.
The technical solution adopted in the present invention is: a kind of offshore platform, it is characterized in that comprising a plurality of unit module buoyancy aid A with the composite materials by die moulding, module buoyancy aid B, module buoyancy aid C, module buoyancy aid D, connecting rope, cable clamp, the rubber shock-absorbing weighing apparatus is decided pitman, described module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, module buoyancy aid D is the geometric configuration of rule, at module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, be respectively equipped with the docking area on the module buoyancy aid D, at module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, be respectively equipped with connecting bore on the docking area of module buoyancy aid D, tapered hole, the two ends of connecting bore, in the two ends of connecting bore, be provided with the cone rubber pad, two side ends in the middle of the module buoyancy aid B is respectively equipped with the damping weighing apparatus and decides the hole, the side two ends of module buoyancy aid C are provided with the damping weighing apparatus and decide the hole, opposite side is respectively equipped with the damping weighing apparatus and decides the hole in the both sides of connecting bore, between two connecting bores on the module buoyancy aid D both sides, be provided with the damping weighing apparatus and decide the hole, module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, the connection that cooperatively interacts of docking area on the module buoyancy aid D, damping weighing apparatus between the adjacent two module buoyancy aids is decided to be provided with in the hole rubber shock-absorbing weighing apparatus and is decided pitman, connecting rope is penetrated module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, in the connecting bore on the module buoyancy aid D docking area, termination at connecting rope is provided with cable clamp, module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, connecting rope between the module buoyancy aid D is provided with cable clamp and is connected to form the buoyancy aid platform.
Also can be provided with two connecting bores up and down on the docking area with the unit module buoyancy aid of composite materials by die moulding, also can be provided with up and down two dampings weighing apparatuses on the module buoyancy aid side and decide the hole;
Lower end with the unit module buoyancy aid sealed bottom of composite materials by die moulding also can be provided with cavity body, and the sidewall of cavity body is provided with the inlet opening.
The present invention is reasonable in design, simple in structure, and is easy to manufacture, cost is low, and easily assembling, Joint strenght height, dependable performance, can keep balance, steady for a long time at sea at good weatherability, and offshore platform movably.In assembling process, the docking area of unit module buoyancy aid can make between the module buoyancy aid accurately location, decide pitman by connecting strand and rubber shock-absorbing weighing apparatus and makes between the module buoyancy aid and be connected firmly, and makes a plurality of unit module buoyancy aids formation integral planes.
Description of drawings
Fig. 1 is structural representation of the present invention.
Fig. 2 is the structural representation of module buoyancy aid A among Fig. 1.
Fig. 3 is that the side of module buoyancy aid B among Fig. 1 is installed the scheme drawing that the rubber shock-absorbing weighing apparatus is decided pitman.
Fig. 4 is that the side of module buoyancy aid C among Fig. 1 is installed the scheme drawing that the rubber shock-absorbing weighing apparatus is decided pitman.
Fig. 5 is that the side of module buoyancy aid D among Fig. 1 is installed the scheme drawing that the rubber shock-absorbing weighing apparatus is decided pitman.
Fig. 6 is the additional strong structural representation of aspect of the present invention.
Fig. 7 is the structural representation of module buoyancy aid A1.
Fig. 8 is the structural representation of module buoyancy aid B1.
Fig. 9 is the structural representation of module buoyancy aid C1.
Figure 10 is the structural representation of module buoyancy aid D1.
Figure 11 is another structural representation of the present invention.
Mark among the figure: 1, module buoyancy aid A, 2, module buoyancy aid B, 3, module buoyancy aid C, 4, module buoyancy aid D, 5, cable clamp, 6, rubber pad, 7, connecting rope, 8, damping weighing apparatus decides the hole, 9, module buoyancy aid A1,10, module buoyancy aid B1,11, module buoyancy aid C1,12, module buoyancy aid D1,13, the airtight bottom of module buoyancy aid, 14, cavity bottom, 15, cavity body, 1. wood materials and composite material gelatinous layer, 2. steel material and composite material gelatinous layer, 3. composite material is fire-retardant layer, 4. composite material and sandstone gelatinous layer.
The specific embodiment
As shown in Figure 1, a kind of offshore platform, it comprises a plurality of unit module buoyancy aid A1 with the composite materials by die moulding, module buoyancy aid B2, module buoyancy aid C3, module buoyancy aid D4, connecting rope 6, cable clamp 5, the rubber shock-absorbing weighing apparatus is decided pitman, described module buoyancy aid A1, module buoyancy aid B2, module buoyancy aid C3, module buoyancy aid D4 is the geometric configuration of rule, at module buoyancy aid A1, module buoyancy aid B2, module buoyancy aid C3, be respectively equipped with the docking area on the module buoyancy aid D4, at module buoyancy aid A1, module buoyancy aid B2, module buoyancy aid C3, be respectively equipped with connecting bore on the docking area of module buoyancy aid D4, tapered hole, the two ends of connecting bore, in the two ends of connecting bore, be provided with cone rubber pad 6, two side ends in the middle of the module buoyancy aid B2 is respectively equipped with the damping weighing apparatus and decides hole 8, the side two ends of module buoyancy aid C3 are provided with the damping weighing apparatus and decide hole 8, opposite side is respectively equipped with the damping weighing apparatus and decides hole 8 in the both sides of connecting bore, between two connecting bores on the module buoyancy aid D4 both sides, be provided with the damping weighing apparatus and decide hole 8, module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, the connection that cooperatively interacts of docking area on the module buoyancy aid D, damping weighing apparatus between the adjacent two module buoyancy aids is decided to be provided with in the hole 8 the rubber shock-absorbing weighing apparatus and is decided pitman, connecting rope 7 is penetrated module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, in the connecting bore on the module buoyancy aid D docking area, be provided with cable clamp 5 in the termination of connecting rope 7, module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, connecting rope 7 between the module buoyancy aid D is provided with cable clamp 5 and is connected to form the buoyancy aid platform.Module buoyancy aid A1 can be F shape, module buoyancy aid D4 Ke Cheng ∟ shape; C3 is rectangular for module buoyancy aid B2, module buoyancy aid, and the two ends of rectangle are provided with the connection platform; Module buoyancy aid docking area is rectangular in shape, and connecting rope is the rope of high strength anti seawater.
The composite material by adopting glass-felt plastic of unit module buoyancy aid, through the module buoyancy aid of mould molding formation enclosure space, the connecting bore on the module buoyancy aid is through hole, shown in Fig. 2,3,4,5.Damping weighing apparatus on the module buoyancy aid side is decided hole 8 and is unfair hole, and the damping weighing apparatus is decided to install in the hole 8 the rubber shock-absorbing weighing apparatus and decided pitman, shown in Fig. 3,4,5.Decide pitman by connecting rope and rubber shock-absorbing weighing apparatus and make between the module buoyancy aid and be connected firmly, steadily, make a plurality of unit module buoyancy aids formation integral planes, as shown in Figure 1.
When in the sea situation zone that stormy waves is big offshore platform being set at sea, module buoyancy aid enlarged in thickness, shown in Fig. 7,8,9,10, be provided with two connecting bores up and down with unit module buoyancy aid A19, the module buoyancy aid B110 of composite materials by die moulding, the docking area of module buoyancy aid C111, module buoyancy aid D112, two dampings weighing apparatuses were decided hole 8 about module buoyancy aid side was provided with, the lower end of unit module buoyancy aid sealed bottom 13 is provided with cavity body 15, module buoyancy aid sealed bottom 13 forms double bottom with cavity body bottom 14, is provided with inlet opening 16 at the sidewall of cavity body.Because buoyancy aid module thickening, two connecting ropes penetrate respectively in two connecting bores up and down on the module buoyancy aid docking area, two rubber shock-absorbings weighing apparatus decide pitman and is weighed in two dampings up and down respectively and decide in the hole 8, be provided with cable clamp 5 in the termination of connecting rope 7, the connecting rope 7 between module buoyancy aid A19, module buoyancy aid B110, module buoyancy aid C111, the module buoyancy aid D112 is provided with cable clamp 5 and is connected to form the buoyancy aid platform.As shown in figure 11, when seawater enters in the cavity body from the inlet opening 16 on the cavity body sidewall, cavity body 15 sinks in the water, and the module buoyancy aid forms the buoyancy aid platform of semisubmersible.The afloat stationarity of buoyancy aid platform of semisubmersible is better, and the ability of resisting stormy waves is stronger.
Applied range of the present invention can be made the module buoyancy aid according to operatings needs such as size, structure, intensity.Peg graft in the docking area of each unit module buoyancy aid, damping weighing apparatus on the module buoyancy aid side is decided to install in the hole rubber shock-absorbing weighing apparatus and is decided pitman, make the module buoyancy aid form the plane, with connecting rope or with machinery and the formation offshore platform that is rigidly connected, it is easy to assembly, quick, can random set dress up tens square meters to the platform of several ten thousand square meters.Can do amusement platform on the aqua communis, as: swimming pool, fish well, parcours, lawn, house, yacht wharf, motor boat harbour, maritime travel, offshore recreational, mariculture etc.As setting up the large high-strength platform, will be strong with additional aspect at platform, as shown in Figure 6, on platform, reinforce wood materials and composite material gelatinous layer successively 1., steel material and composite material gelatinous layer 2., the fire-retardant layer of composite material 3., composite material and sandstone gelatinous layer are 4..It is applicable to marine highway, seadrome etc.That the present invention has is reasonable in design, simple in structure, easy to manufacture, cost is low, intensity height, dependable performance, and assembling is advantage such as quick flexibly.

Claims (3)

1. offshore platform, it is characterized in that comprising a plurality of unit module buoyancy aid A with the composite materials by die moulding, module buoyancy aid B, module buoyancy aid C, module buoyancy aid D, connecting rope, cable clamp, the rubber shock-absorbing weighing apparatus is decided pitman, described module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, module buoyancy aid D is the geometric configuration of rule, at module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, be respectively equipped with the docking area on the module buoyancy aid D, at module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, be respectively equipped with connecting bore on the docking area of module buoyancy aid D, tapered hole, the two ends of connecting bore, in the two ends of connecting bore, be provided with the cone rubber pad, two side ends in the middle of the module buoyancy aid B is respectively equipped with the damping weighing apparatus and decides the hole, the side two ends of module buoyancy aid C are provided with the damping weighing apparatus and decide the hole, opposite side is respectively equipped with the damping weighing apparatus and decides the hole in the both sides of connecting bore, between two connecting bores on the module buoyancy aid D both sides, be provided with the damping weighing apparatus and decide the hole, module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, the connection that cooperatively interacts of docking area on the module buoyancy aid D, damping weighing apparatus between the adjacent two module buoyancy aids is decided to be provided with in the hole rubber shock-absorbing weighing apparatus and is decided pitman, connecting rope is penetrated module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, in the connecting bore on the module buoyancy aid D docking area, termination at connecting rope is provided with cable clamp, module buoyancy aid A, module buoyancy aid B, module buoyancy aid C, connecting rope between the module buoyancy aid D is provided with cable clamp and is connected to form the buoyancy aid platform.
2. offshore platform according to claim 1 is characterized in that also can being provided with two connecting bores up and down on the docking area with the unit module buoyancy aid of composite materials by die moulding, also can be provided with up and down two dampings weighing apparatuses on the module buoyancy aid side and decide the hole.
3. according to the described offshore platform of claim 1, it is characterized in that also can being provided with cavity body with the lower end of the unit module buoyancy aid sealed bottom of composite materials by die moulding, the sidewall of cavity body is provided with the inlet opening.
CN 201310103967 2013-03-28 2013-03-28 Offshore platform Pending CN103231786A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201310103967 CN103231786A (en) 2013-03-28 2013-03-28 Offshore platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201310103967 CN103231786A (en) 2013-03-28 2013-03-28 Offshore platform

Publications (1)

Publication Number Publication Date
CN103231786A true CN103231786A (en) 2013-08-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201310103967 Pending CN103231786A (en) 2013-03-28 2013-03-28 Offshore platform

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CN (1) CN103231786A (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103448880A (en) * 2013-09-05 2013-12-18 李爱英 Offshore platform
CN104443296A (en) * 2014-12-25 2015-03-25 吴昊 Connecting device for fast mounting and dismounting ocean structures
CN105000142A (en) * 2015-06-25 2015-10-28 河南福海瑞港海洋设备有限公司 Combined floating structure
CN105711764A (en) * 2016-02-15 2016-06-29 罗煜 Platform
CN105836063A (en) * 2016-04-11 2016-08-10 孙本新 Floating platform type vessel device
NO20161803A1 (en) * 2016-11-15 2018-05-16 Hans Gude Gudesen Modular structures and method for construction thereof
CN108639238A (en) * 2015-01-28 2018-10-12 查尔斯·西莫拉 Floating platform module

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103448880A (en) * 2013-09-05 2013-12-18 李爱英 Offshore platform
CN104443296A (en) * 2014-12-25 2015-03-25 吴昊 Connecting device for fast mounting and dismounting ocean structures
CN108639238A (en) * 2015-01-28 2018-10-12 查尔斯·西莫拉 Floating platform module
CN105000142A (en) * 2015-06-25 2015-10-28 河南福海瑞港海洋设备有限公司 Combined floating structure
CN105711764A (en) * 2016-02-15 2016-06-29 罗煜 Platform
CN105711764B (en) * 2016-02-15 2017-11-10 罗煜 A kind of platform
CN105836063A (en) * 2016-04-11 2016-08-10 孙本新 Floating platform type vessel device
NO20161803A1 (en) * 2016-11-15 2018-05-16 Hans Gude Gudesen Modular structures and method for construction thereof
NO342560B1 (en) * 2016-11-15 2018-06-18 Hans Gude Gudesen Modular structures and method for construction thereof

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PB01 Publication
C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20130807