CN113730842B - Offshore wind power booster station - Google Patents

Offshore wind power booster station Download PDF

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Publication number
CN113730842B
CN113730842B CN202111042335.6A CN202111042335A CN113730842B CN 113730842 B CN113730842 B CN 113730842B CN 202111042335 A CN202111042335 A CN 202111042335A CN 113730842 B CN113730842 B CN 113730842B
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CN
China
Prior art keywords
hose
water
winding drum
communicated
tank
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Active
Application number
CN202111042335.6A
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Chinese (zh)
Other versions
CN113730842A (en
Inventor
施晓越
邵夕吾
戴军
姚树国
方如意
曹月杰
石素文
代磊
陈政
陈艳君
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.)
Nantong Rainbow Offshore and Engineering Equipment Co Ltd
Original Assignee
Nantong Rainbow Offshore and Engineering Equipment Co Ltd
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Publication date
Application filed by Nantong Rainbow Offshore and Engineering Equipment Co Ltd filed Critical Nantong Rainbow Offshore and Engineering Equipment Co Ltd
Priority to CN202111042335.6A priority Critical patent/CN113730842B/en
Publication of CN113730842A publication Critical patent/CN113730842A/en
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Publication of CN113730842B publication Critical patent/CN113730842B/en
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Classifications

    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C3/00Fire prevention, containment or extinguishing specially adapted for particular objects or places
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C31/00Delivery of fire-extinguishing material
    • A62C31/02Nozzles specially adapted for fire-extinguishing
    • A62C31/03Nozzles specially adapted for fire-extinguishing adjustable, e.g. from spray to jet or vice versa
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62CFIRE-FIGHTING
    • A62C33/00Hose accessories
    • A62C33/04Supports or clamps for fire hoses
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/04Combinations of filters with settling tanks
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B17/00Artificial islands mounted on piles or like supports, e.g. platforms on raisable legs or offshore constructions; Construction methods therefor
    • E02B17/0017Means for protecting offshore constructions
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B11/00Arrangements or adaptations of tanks for water supply
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B3/00Methods or installations for obtaining or collecting drinking water or tap water
    • E03B3/02Methods or installations for obtaining or collecting drinking water or tap water from rain-water
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/108Rainwater harvesting

Abstract

The invention discloses an offshore wind power booster station, which relates to the technical field of offshore booster stations and comprises a bottom support and an upper platform, wherein the upper platform is provided with a rainwater collecting system, the rainwater collecting system is communicated with a water storage tank in the upper platform, and the water storage tank is communicated with a fire fighting system and a water supply system; the upper station comprises a plurality of station layers which are distributed up and down, the fire fighting system comprises a hose and a winding drum, the hose is communicated with the water storage tank and wound on the winding drum, and a power part for driving the winding drum to rotate is arranged on the winding drum; the outer end of the hose is connected with the spray head, the moving piece is arranged at the top of the station layer, and the hose penetrates through the moving piece and then vertically faces downwards; the movable member drives the nozzle end of the hose to move, the winding drum drives the movable member to move while the hose is placed outside the hose, after the nozzle is horizontally moved in place, the movable member stops, the winding drum continues to drive the hose to be placed outside the hose, the nozzle moves downwards in place, and fire extinguishing work is started. The effect of improving the fire extinguishing effect of the fire ignition points at all positions and improving the utilization rate of fresh water is achieved.

Description

Offshore wind power booster station
Technical Field
The invention relates to the technical field of offshore booster stations, in particular to an offshore wind power booster station.
Background
Offshore wind power becomes a renewable clean energy development key point due to the characteristics of high wind speed, low turbulence, small environmental influence and the like. At present, offshore wind power is mostly generated by a plurality of offshore wind turbine groups, is transmitted to an offshore booster station through a submarine cable current collection link in a centralized mode, and is boosted and pressure-fed to an onshore transformer substation through a main transformer of the offshore booster station to finish power transmission. Therefore, the offshore booster station becomes one of the vital links for transmitting the offshore wind power generation.
Because seawater has the problem of erosion and the like, the existing fire extinguishing equipment generally needs to use fresh water to carry out fire fighting, water supply and other works, cannot accurately aim at fire points at various positions, is easy to waste fresh water sources, and causes great waste for precious fresh water at sea.
Disclosure of Invention
The invention aims to provide an offshore wind power booster station which can improve the fire extinguishing effect on ignition points at various positions and improve the utilization rate of fresh water.
The technical purpose of the invention is realized by the following technical scheme:
an offshore wind power booster station comprises a bottom support and an upper platform, wherein a rainwater collection system is arranged on the upper platform and is communicated with a water storage tank in the upper platform, and the water storage tank is communicated with a fire fighting system and a water supply system;
The fire fighting system comprises a hose and a winding drum, the hose is communicated with the water storage tank and wound on the winding drum, and a power part for driving the winding drum to rotate is arranged on the winding drum; the outer end of the hose is connected with the spray head, the moving piece is arranged at the top of the station layer, and the hose penetrates through the moving piece and then vertically faces downwards;
the moving member drives the nozzle end of the hose to move, the winding drum drives the moving member to move while the hose is placed outside the hose, after the nozzle is horizontally moved in place, the moving member stops, the winding drum continues to drive the hose to be placed outside the hose, the nozzle moves downwards in place, and fire extinguishing work is started.
Furthermore, the rainwater collection system comprises a water collection tank and a collection port, the water collection tank comprises a top, the collection port is arranged in the water collection tank horizontally outwards and is communicated with the water storage tank.
Furthermore, a filter screen is arranged at the collecting opening.
Furthermore, a baffle and a starting and closing piece for driving the baffle to slide up and down are arranged in the water collecting tank, and the upper end of a sliding path of the baffle is blocked outside the collecting port.
Furthermore, a plurality of filtering channels are connected in parallel between the rainwater collecting system and the water storage tank and comprise an opening and closing valve and a filter, one end of the opening and closing valve is communicated with the rainwater collecting system, the other end of the opening and closing valve is communicated with the filter, and the other end of the filter is communicated with the water storage tank.
Furthermore, a sedimentation tank is arranged between the rainwater collection system and the water storage tank.
Furthermore, a water guide plate on the upper portion and a slag trap on the lower portion are connected in the sedimentation tank, one end of each of the water guide plate and the slag trap is closed, a through hole is formed in the other end of each of the water guide plate and the slag trap, the rainwater collection system is communicated above the closed end of the water guide plate, and the water storage tank is communicated above the closed end of the slag trap.
Furthermore, the water guide plate and the slag blocking plate at the lower part are obliquely arranged, and the oblique directions are all upward oblique of the closed end.
Furthermore, the periphery of the winding drum is provided with a through hole, the hose enters the winding drum from one end of the hose, extends out of the through hole, is wound outside the winding drum and is finally connected to the moving piece.
Furthermore, the moving part comprises a moving trolley, the moving trolley is provided with a vertical hole through which the hose penetrates downwards, the moving trolley is connected with a pair of vertical guide wheels, and the hose penetrates between the vertical guide wheels and then enters the vertical hole to move downwards.
In conclusion, the invention has the following beneficial effects:
by the arrangement of the movable trolley and the rolling sleeve, the fire-extinguishing effect on the fire-extinguishing points at all positions is improved, the utilization rate of fresh water is improved, and the automatic fire extinguishing in the future is facilitated;
Use through the sedimentation tank is convenient for deposit earlier the rainwater refilter, improves the life of filter to set up a plurality of reserve filters, so that freely switch over the use, convenient long-term unmanned on duty's booster station can normally work.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of a rainwater collection system according to the present invention;
FIG. 3 is a schematic view of the structure of a water collecting trough portion;
FIG. 4 is a schematic view showing the structure of a sedimentation tank section in the present invention;
fig. 5 is a schematic view showing a connection structure of a hose portion in the present invention.
In the figure, 1, a bottom support; 11. an upper station; 12. an escape chute; 2. a water storage tank; 21. a hose; 22. a winding drum; 23. a water collection tank; 24. a collection port; 25. a filter screen; 26. a baffle plate; 27. a connecting plate; 3. a filtration channel; 31. opening and closing a valve; 32. a filter; 4. a sedimentation tank; 41. a water guide plate; 42. a slag trap; 5. moving the trolley; 51. a vertical guide wheel; 52. and a horizontal guide wheel.
Detailed Description
The following further describes the embodiments of the present invention with reference to the drawings, and the present embodiment is not to be construed as limiting the invention.
An offshore wind power booster station comprises a bottom support 1 and an upper platform 11, wherein the upper platform 11 is prefabricated into a whole and is arranged on the bottom support 1 in a hoisting mode, as shown in figure 1; the upper platform 11 comprises four layers of platform layers which are distributed up and down, and the two platform layers at the top are also connected with outdoor flexible escape slideways 12, so that when the lifeboats quickly reach the bottom layer, the lifeboats below enter the lifeboats through the crawling ladder to escape.
As shown in fig. 2, 11 tops in upper portion platform are connected with rainwater collecting system, and rainwater collecting system communicates in proper order in sedimentation tank 4 and storage water tank 2 in 11 upper portion platforms, and storage water tank 2 communicates in fire extinguishing system and water supply system through the water pump to in fire control and water supply use, 2 tops in storage water tank still communicate in emergent pipeline, and emergent pipeline absorbs the sea water through the water pump and gets into the storage water tank, with the priority through sea water control condition of a fire when fresh water runs out.
As shown in fig. 2, in order to facilitate switching the filters 32 to be used when no one is present, a plurality of filtering channels 3 are connected in parallel between the rainwater collecting system and the water storage tank 2, each filtering channel 3 includes an electric on-off valve 31 and a filter 32, one end of the on-off valve 31 is communicated with the rainwater collecting system, the other end of the on-off valve 31 is communicated with the filter 32, the other end of the filter 32 is communicated with the water storage tank 2, only one filtering channel 3 is opened through the on-off valve 31 to work at ordinary times, and after the filtering channel is used for a period of time, the other filter 32 is switched to work.
As shown in fig. 2 and 3, the rainwater collecting system includes a water collecting tank 23 at the top and a collecting port 24 in the water collecting tank 23, the collecting port 24 is horizontally arranged outwards and communicated with the water storage tank 2, and a filter screen 25 is arranged at the collecting port 24;
A baffle 26 and a starting and closing piece for driving the baffle 26 to slide up and down are arranged in the water collecting tank 23, and the upper end of the sliding path of the baffle 26 is blocked outside the collecting port 24;
in this embodiment, two sets of collecting ports 24 are provided, which are respectively formed on the outer peripheral walls of the two circular tubes, the circular tubes are downwardly communicated with the main pipe, and the main pipe is provided with an electromagnetic on-off valve and is communicated with the sedimentation tank 4; the baffle 26 is a cylinder sleeved outside the circular pipe, a connecting plate 27 is arranged in the water collecting tank 23, the connecting plate 27 is driven to move up and down through an electric push rod in the water collecting tank 23, and two ends of the connecting plate 27 are respectively sleeved outside the circular pipe and fixedly connected to the lower end of the baffle 26; the baffle 26 can also be moved up and down directly by an electric push rod.
As shown in fig. 4, a water guide plate 41 at the upper part and a slag trap 42 at the lower part are connected in the sedimentation tank 4, one side of the sedimentation tank 4 is provided with a water inlet, the other side is provided with a water outlet and is communicated with the water storage tank 2, one end of the water guide plate 41 close to the water inlet end is closed, the other end is provided with a through hole, one end of the slag trap 42 close to the water outlet is closed, the other end is provided with a through hole, the rainwater collection system is communicated above the closed end of the water guide plate 41, and the water storage tank 2 is communicated above the closed end of the slag trap 42;
a slag discharge port is formed at the bottom of the sedimentation tank 4, and the height of the bottom surface of the sedimentation tank 4 towards the slag discharge port is gradually reduced; the water guide plate 41 and the slag trap 42 at the lower part are both obliquely arranged, the oblique directions are all oblique upwards at the closed ends, the bottom sediment is disturbed when the water outlet is avoided through the slag trap 42, the water enters along the wall of the pool through the water guide plate 41, and the disturbance to the bottom of the pool is reduced.
As shown in fig. 5, the fire fighting system further comprises a plurality of groups of hoses 21 and winding drums 22 respectively located on different platform layers, the winding drums 22 are connected below the top plates of the platform layers, the inner ends of the hoses 21 are both communicated with the water storage tank 2 and wound on the winding drums 22, and the winding drums 22 are provided with power members for driving the winding drums 22 to rotate; the shower nozzle is connected to hose 21 outer end, and station layer top is equipped with the moving member, and hose 21 passes behind the moving member vertical downwards.
As shown in fig. 5, a through hole is formed on the periphery of the winding drum 22, the hose 21 enters the winding drum 22 from one end thereof, extends outwards from the through hole, is wound outside the winding drum 22, and is finally connected to the moving member;
the moving part comprises a moving trolley 5, a rail can be arranged below a top plate of the station layer for the moving trolley 5 to walk, the moving trolley 5 can also be placed on a suspended ceiling, and a plurality of through holes for placing the spray heads are formed in the suspended ceiling so as to realize the movement of the moving trolley 5 on the top of the station layer;
the movable trolley 5 is provided with a vertical hole for the hose 21 to penetrate downwards, the movable trolley 5 is connected with a pair of vertical guide wheels 51 and a pair of horizontal guide wheels 52, the hose 21 penetrates between the two horizontal guide wheels 52 to guide the horizontal position of the hose, then turns downwards through the vertical guide wheels 51 on the inner side, penetrates between the two vertical guide wheels 51, and guides the hose to vertically downwards position so that the hose enters the vertical hole downwards;
In order to facilitate the downward movement of the hose 21 to move the spray head downward, a motor for driving the inner vertical guide wheel 51 to rotate is fixed on the movable trolley 5, so as to facilitate the falling of the spray head at the lower end of the hose 21.
The working principle is as follows:
when raining, firstly opening a slag discharge port at the bottom of the sedimentation tank 4 to discharge bottom sediment, then downwards moving the driving baffle 26 to enable the collection port 24 to enter the sedimentation tank 4, opening a filtering channel 3 after the sedimentation tank 4 is full, and guiding filtered rainwater into the water storage tank 2;
when a fire is discovered from monitoring or a smoke sensor and the like in the upper platform 11, the moving member drives the nozzle end of the hose 21 to move, the winding drum 22 drives the hose 21 to be placed outwards, the moving member moves, after the nozzle is moved horizontally in place, the moving member stops, the winding drum 22 continues to drive the hose 21 to be placed outwards, the nozzle moves downwards in place and feeds water from the water storage tank through the water pump, and the fire extinguishing work is started.
While the invention has been described with reference to certain preferred embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention.

Claims (5)

1. The utility model provides an offshore wind power booster station which characterized in that: the rainwater collection system is communicated with a water storage tank (2) in the upper platform (11), and the water storage tank (2) is communicated with a fire fighting system and a water supply system;
the rainwater collection system comprises a water collection tank (23) at the top, and a circular pipe and a collection port (24) which are arranged in the water collection tank (23), wherein the collection port (24) is horizontally and outwards arranged on the peripheral wall of the circular pipe, the circular pipe is downwards communicated with a header pipe of the water storage tank (2), an electromagnetic on-off valve is arranged on the header pipe and is communicated with the sedimentation tank (4), and a water outlet is formed in the other side of the sedimentation tank (4) and is communicated with the water storage tank (2); a filter screen (25) is arranged at the collecting port (24);
a baffle (26) is arranged in the water collecting tank (23), the baffle (26) is a cylinder sleeved outside the circular pipe and slides up and down through an electric push rod, and the upper end of a sliding path of the baffle (26) is blocked outside the collecting port (24);
the fire fighting system comprises a hose (21) and a winding drum (22), the hose (21) is communicated with the water storage tank (2) and wound on the winding drum (22), and a power part for driving the winding drum (22) to rotate is arranged on the winding drum (22); the outer end of the hose (21) is connected with the spray head, the moving piece is arranged at the top of the station layer, and the hose (21) penetrates through the moving piece and then vertically faces downwards;
A through hole is formed in the periphery of the winding drum (22), the hose (21) enters the winding drum (22) from one end of the winding drum (22), extends out of the through hole, is wound outside the winding drum (22) and is connected to the moving piece;
the moving part comprises a moving trolley (5), a vertical hole for the hose (21) to penetrate downwards is formed in the moving trolley (5), a pair of vertical guide wheels (51) is connected to the moving trolley (5), the hose (21) penetrates through the vertical guide wheels (51) and then enters the vertical hole downwards,
the movable trolley (5) is placed on a suspended ceiling of the station layer, and a plurality of through holes for placing the spray heads are formed in the suspended ceiling;
the movable member drives the nozzle end of the hose (21) to move, the winding drum (22) drives the hose (21) to be placed outside, the movable member moves at the same time, after the nozzle is moved horizontally to the place, the movable member stops, the winding drum (22) continues to drive the hose (21) to be placed outside, the nozzle moves downwards to the place, and fire extinguishing work is started.
2. Offshore wind power booster station according to claim 1, characterized in that: rainwater collection system and storage water tank (2) between the parallel connection have a plurality of filtration passageway (3), filter passageway (3) including on-off valve (31) and filter (32), on-off valve (31) one end communicate in rainwater collection system, the other end communicates in filter (32), filter (32) other end communicates in storage water tank (2).
3. Offshore wind power booster station according to claim 1 or 2, characterized in that: a sedimentation tank (4) is arranged between the rainwater collection system and the water storage tank (2).
4. Offshore wind power booster station according to claim 3, characterized in that: the rainwater collecting system is characterized in that a water guide plate (41) on the upper portion and a slag trap (42) on the lower portion are connected in the sedimentation tank (4), one end of each of the water guide plate (41) and the slag trap (42) is sealed, the other end of each of the water guide plate (41) and the slag trap (42) is provided with a through hole, the rainwater collecting system is communicated above the closed end of the water guide plate (41), and the water storage tank (2) is communicated above the closed end of the slag trap (42).
5. Offshore wind power booster station according to claim 4, characterized in that: the water guide plate (41) and the slag blocking plate (42) at the lower part are obliquely arranged, and the oblique directions are all upwards oblique at the closed end.
CN202111042335.6A 2021-09-07 2021-09-07 Offshore wind power booster station Active CN113730842B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111042335.6A CN113730842B (en) 2021-09-07 2021-09-07 Offshore wind power booster station

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111042335.6A CN113730842B (en) 2021-09-07 2021-09-07 Offshore wind power booster station

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CN113730842A CN113730842A (en) 2021-12-03
CN113730842B true CN113730842B (en) 2022-06-28

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Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW391260U (en) * 1997-10-17 2000-05-21 Jeng Ching Wei Manless fire fighting equipment
CN202187418U (en) * 2011-07-14 2012-04-11 无锡市政设计研究院有限公司 Gutter inlet device
CN204199373U (en) * 2014-10-14 2015-03-11 苏州纳源环保科技有限公司 A kind of rainwater-collecting filters decontamination system
CN104906725A (en) * 2015-06-16 2015-09-16 中国能源建设集团广东省电力设计研究院有限公司 Main transformer fire extinguishing system of maritime booster station
CN107034868A (en) * 2017-05-29 2017-08-11 江苏省金峰石油机械制造有限公司 A kind of fire-proof type offshore drilling platformses
CN206481741U (en) * 2017-02-16 2017-09-12 深圳市柯沐生态科技产业有限公司 A kind of ecological garden rainwater cyclic utilization system
CN207245026U (en) * 2017-06-07 2018-04-17 北京良乡蓝鑫水利工程设计有限公司 A kind of automatic-lifting type rain water on roof mouth
WO2018150096A1 (en) * 2017-02-15 2018-08-23 Rolls-Royce Oy Ab A fire extinguisher and a seagoing vessel
CN209798950U (en) * 2019-04-03 2019-12-17 浙江华大树脂有限公司 Rainwater collection device of chemical plant
CN112688221A (en) * 2020-12-18 2021-04-20 长江勘测规划设计研究有限责任公司 Double-layer offshore booster station

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2554075B (en) * 2016-09-15 2021-05-19 Equinor Energy As Optimising fire protection for an offshore platform

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW391260U (en) * 1997-10-17 2000-05-21 Jeng Ching Wei Manless fire fighting equipment
CN202187418U (en) * 2011-07-14 2012-04-11 无锡市政设计研究院有限公司 Gutter inlet device
CN204199373U (en) * 2014-10-14 2015-03-11 苏州纳源环保科技有限公司 A kind of rainwater-collecting filters decontamination system
CN104906725A (en) * 2015-06-16 2015-09-16 中国能源建设集团广东省电力设计研究院有限公司 Main transformer fire extinguishing system of maritime booster station
WO2018150096A1 (en) * 2017-02-15 2018-08-23 Rolls-Royce Oy Ab A fire extinguisher and a seagoing vessel
CN206481741U (en) * 2017-02-16 2017-09-12 深圳市柯沐生态科技产业有限公司 A kind of ecological garden rainwater cyclic utilization system
CN107034868A (en) * 2017-05-29 2017-08-11 江苏省金峰石油机械制造有限公司 A kind of fire-proof type offshore drilling platformses
CN207245026U (en) * 2017-06-07 2018-04-17 北京良乡蓝鑫水利工程设计有限公司 A kind of automatic-lifting type rain water on roof mouth
CN209798950U (en) * 2019-04-03 2019-12-17 浙江华大树脂有限公司 Rainwater collection device of chemical plant
CN112688221A (en) * 2020-12-18 2021-04-20 长江勘测规划设计研究有限责任公司 Double-layer offshore booster station

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