Offshore booster station
By designing emergency lighting devices with sealing covers and rotating mechanisms on offshore booster stations, powered by backup power supply and cleaning and sealing protection through pumping and blowing mechanisms, the problem of emergency lighting is solved for the easy corrosion of emergency lighting in harsh marine environments, ensuring its lighting effect and service life.
Patent Information
- Application Number
- CN202510269481.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2025-05-06
AI Technical Summary
The existing emergency lighting of offshore booster stations is prone to corrosion in harsh marine environments, affecting the lighting effect and service life, and salt spray and dust attached to the surface also affects its performance.
An emergency lighting device for an offshore booster station is designed, using a sealing cover and a rotating mechanism, powered by a backup power supply, to realize emergency lighting, and to clean and seal protection through the pumping and blowing mechanism.
Effectively prevent emergency lighting from corroding in harsh environments, ensuring its lighting effect and service life, and improving the lighting effect and overall reliability of the equipment through cleaning mechanisms.
Smart Images

Figure CN119944920A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of emergency lighting, in particular to an offshore booster station. Background Art
[0002] Offshore booster stations are key facilities for collecting and converting electricity in offshore wind farms. They are built on the sea and are used to collect and boost the electricity generated by offshore wind turbines and transmit it to the land power grid through submarine cables. In addition, offshore booster stations are equipped with backup power supplies and emergency lighting. The emergency power supply is designed to supply power to necessary equipment when the working power supply is lost under normal circumstances to ensure the safe operation of the offshore booster station. The emergency lighting provides necessary lighting in emergency situations. These emergency lighting are usually designed to automatically switch to emergency power supply when the normal lighting working power supply is lost.
[0003] However, when the existing offshore booster stations are in use, emergency lighting is usually exposed to the outside, and is exposed to harsh marine environments such as high humidity, high salt fog, long sunshine, high temperature and strong winds in different seasons all year round, causing corrosion of the emergency lighting. At the same time, the impact of wind on the equipment and the beating of waves may also cause damage to the surface coating, exposing the metal substrate, thereby promoting the occurrence of corrosion, affecting its lighting effect and service life. In addition, impurities such as salt fog and dust are easily attached to the surface of the emergency lighting, which will also affect the lighting effect and service life. Summary of the invention
[0004] The object of the present invention is to provide an offshore booster station to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an offshore booster station, comprising an emergency lighting device arranged on the side wall of the offshore booster station body, the emergency lighting device comprising a plurality of sealing covers fixedly connected to the side wall of the offshore booster station body, and the side wall of each sealing cover is provided with a plurality of circular holes arranged in an array, the outer wall of the circular hole is provided with a sealing plate, and the sealing plate is rotatably connected to the outer wall of the sealing cover through a rotating mechanism, the end of the sealing plate is fixedly connected with a plurality of bristles arranged in an array, and a first movable plate is connected in the sealing cover through a moving mechanism, the top of the first movable plate is fixedly connected with a plurality of mounting plates arranged in an array, and the bottom of the mounting plate is fixedly connected with an emergency lighting lamp, the bottom of the mounting plate is fixedly connected with a plurality of mounting rods arranged in an array, and a ball is arranged at the bottom of the mounting rod, a backup power supply is arranged in the sealing cover, the backup power supply is fixed to the side wall of the offshore booster station body, and the emergency lighting lamp is electrically connected to the backup power supply, an exhaust mechanism for extracting air from the sealing cover is arranged below the sealing cover, and an air blowing mechanism for blowing air to the emergency lighting lamp is arranged below the sealing cover.
[0006] Preferably, the exhaust mechanism includes a fixed cover fixedly connected to the side wall of the offshore booster station body, and a sliding plate is slidably connected inside the fixed cover through a first reset mechanism, the movement of the sliding plate is driven by a first pushing mechanism, an exhaust pipe is fixedly connected between the fixed cover and the sealing cover, and a one-way valve is arranged in the exhaust pipe.
[0007] Preferably, the blowing mechanism includes an L-shaped tube fixedly inserted at the bottom of the sealing cover, and the lower end of the L-shaped tube is fixedly inserted at the top of the fixed cover, a working cover is fixedly inserted at the side wall of the L-shaped tube, and a sliding block is slidably connected inside the working cover, a through hole is opened at the top of the sliding block, and a first spring is fixedly connected between the sliding block and the working cover, and the movement of the sliding block is pushed by a second pushing mechanism.
[0008] Preferably, the first reset mechanism includes two symmetrically arranged T-shaped guide rods fixedly connected to the bottom of the sliding plate, and the side walls of the T-shaped guide rods are sleeved with connecting plates, the connecting plates are fixed to the bottom of the fixed cover, and the side walls of each T-shaped guide rod are sleeved with a second spring.
[0009] Preferably, the first pushing mechanism includes a mounting cover fixedly inserted at the bottom of the sealing cover, and a first inclined plate is inserted in the mounting cover, the bottom of the first inclined plate is fixedly connected to the second movable plate, and the bottom of the second movable plate is fixed to the top of the sliding plate.
[0010] Preferably, the second pushing mechanism comprises a fixed block fixedly connected to the side wall of the first movable plate, and the side wall of the fixed block is fixedly connected to the second inclined plate.
[0011] Preferably, the rotating mechanism includes two symmetrically arranged support blocks fixedly connected to the side walls of the sealing cover, the opposite side walls of the two support blocks are rotatably connected to the rotating blocks via a rotating shaft, and the rotating blocks are fixed to the bottom of the sealing plate, the side wall of the rotating shaft is fixedly sleeved with a first gear, and the side wall of the support block is connected to a rack via a second reset mechanism, the rack is meshed with the first gear, and the side wall of the support block is fixedly connected to a protective cover.
[0012] Preferably, the second reset mechanism includes two symmetrically arranged mounting blocks fixedly connected to the side walls of the support block, and two symmetrically arranged guide rods are fixedly connected to the opposite side walls of the two mounting blocks, and the side wall sleeve of each guide rod is provided with a slider, the slider is fixed to the side wall of the rack, and the side wall sleeve of each guide rod is provided with a third spring.
[0013] Preferably, the movable mechanism includes a fixed rod fixedly connected between the sealing cover and the offshore substation body, and the first movable plate is sleeved on the side wall of the fixed rod, a threaded rod is rotatably connected between the sealing cover and the offshore substation body, and the first movable plate is threadedly connected to the side wall of the threaded rod, and the rotation of the threaded rod is driven by a driving mechanism.
[0014] Preferably, the driving mechanism includes a gear ring fixedly mounted on the side wall of the threaded rod, and the inner wall of the sealing cover is fixedly connected to a U-shaped plate, the side wall of the U-shaped plate is fixedly connected to a motor, the output end of the motor is fixedly connected to a second gear, and the second gear is meshingly arranged with the gear ring.
[0015] Compared with the prior art, the present invention has the following beneficial effects: This offshore booster station is provided with a rotating mechanism, etc., so that when a power outage occurs and emergency lighting is needed, the emergency lighting lamp and the motor can be powered by a backup power supply, and the motor can be started. The rotation of the motor drives the rotation of the second gear, thereby driving the gear ring and the threaded rod to rotate, and then driving the first movable plate to move along the fixed rod. When the first movable plate moves, it can drive the emergency lighting lamp to move through the mounting plate. When the mounting plate and the end of the sealing plate are butted, the sealing plate can be pushed to rotate outward along the rotating shaft. At the same time, when the rotating shaft rotates, it can drive the first gear to rotate and drive the rack to move. The third spring is compressed, and after the sealing plate rotates, the ball can Roll on the top of the sealing plate. At this time, the bristles can be used to automatically clean the surface of the emergency lighting, and the emergency lighting can be extended outward through the round hole. At this time, the emergency lighting is powered by the backup power supply to achieve emergency lighting and ensure the use effect. After the emergency lighting is completed, the first moving plate and the mounting plate can be driven by the moving mechanism to move and reset, and the emergency lighting can be moved into the sealing cover. At this time, the rack can move and reset under the action of the third spring, and at the same time, drive the first gear and the rotating shaft to rotate and reset, and then drive the sealing plate to rotate and reset upward and block and seal the round hole, so that the emergency lighting can be sealed and protected to ensure its lighting effect and life; this offshore booster station By setting an exhaust mechanism, when the first movable plate and the mounting plate drive the emergency lighting lamp to move into the sealing cover, after the sealing plate rotates and resets to seal the circular hole, when the first movable plate continues to move, it can abut against the first inclined plate, thereby pushing the second movable plate to move downward, and driving the sliding plate to move downward along the fixed cover through the second movable plate. At the same time, the second spring is compressed. At this time, negative pressure is generated in the fixed cover. At the same time, the first one-way valve is opened, so that the air in the sealing cover can enter the fixed cover through the exhaust pipe for temporary storage, thereby avoiding pollution and corrosion to the emergency lighting lamp and ensuring its lighting effect and life. Moreover, when the emergency lighting lamp moves outward through the circular hole, the first movable plate moves closer to the first movable plate. The working cover moves in the direction of the first movable plate and the first inclined plate are disengaged. At this time, the sliding plate can move downward and reset under the action of the second spring, so that the air temporarily stored in the fixed cover can be squeezed. After the closing plate is rotated to a horizontal state, when the emergency lighting lamp is against and moves with the bristles, the sliding block can slide along the second inclined plate to the side wall of the fixed block. At this time, the sliding block is pushed to move into the working cover so that the through hole coincides with the L-shaped tube. At the same time, the first spring is compressed. At this time, the compressed air squeezed in the fixed cover can be blown out through the L-shaped tube, so that the emergency lighting lamp, the bristles and the closing plate can be blown and cleaned, so that the cleaning effect of the emergency lighting lamp is better, thereby ensuring its lighting effect and life. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the use state of the present invention; Figure 2 It is a partial cross-sectional structural schematic diagram of the present invention; Figure 3 It is a partial cross-sectional structural schematic diagram of the sealing cover in the present invention; Figure 4 for Figure 1 A schematic diagram of the enlarged structure at A in the middle; Figure 5 for Figure 2 A schematic diagram of the enlarged structure at B in the middle; Figure 6 for Figure 3 Schematic diagram of the enlarged structure at C in the middle; Figure 7 for Figure 4 Schematic diagram of the enlarged structure at D in the middle; Figure 8 for Fig.10 Schematic diagram of the enlarged structure at E in the middle; Fig. 9 for Figure 6 The enlarged structural diagram at F in the middle; Fig.10 for Figure 5 Schematic diagram of the enlarged structure at G in the middle.
[0017] In the figure: 1. Offshore booster station body; 2. Air extraction mechanism; 201. Fixed cover; 202. Sliding plate; 203. Air extraction pipe; 3. Air blowing mechanism; 301. L-shaped pipe; 302. Working cover; 303. Sliding block; 304. Through hole; 305. First spring; 4. First reset mechanism; 401. T-shaped guide rod; 402. Connecting plate; 403. Second spring; 5. First pushing mechanism; 501. Mounting cover; 502. First inclined plate; 503. Second moving plate; 6. Second pushing mechanism; 601. Fixed block; 602. Second inclined plate; 7. Rotating mechanism; 701. Support block; 702. Rotating shaft; 703. Rotating block; 704. First gear Wheel; 705, rack; 706, protective cover; 8, second reset mechanism; 801, mounting block; 802, guide rod; 803, slider; 804, third spring; 9, moving mechanism; 901, fixed rod; 902, threaded rod; 10, driving mechanism; 1001, gear ring; 1002, U-shaped plate; 1003, motor; 1004, second gear; 11, emergency lighting device; 1101, sealing cover; 1102, round hole; 1103, sealing plate; 1104, bristles; 1105, first moving plate; 1106, mounting plate; 1107, emergency lighting; 1108, backup power supply; 1109, mounting rod; 1110, ball bearing. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0019] See also Figure 1-Figure 10 The present invention provides a technical solution: an offshore substation, comprising an emergency lighting device 11 arranged on the side wall of an offshore substation body 1, the emergency lighting device 11 comprising a plurality of sealing covers 1101 fixedly connected to the side wall of the offshore substation body 1, and the side wall of each sealing cover 1101 is provided with a plurality of circular holes 1102 arranged in an array, the outer wall of the circular hole 1102 is provided with a sealing plate 1103, and the sealing plate 1103 is rotatably connected to the outer wall of the sealing cover 1101 through a rotating mechanism 7, the end of the sealing plate 1103 is fixedly connected with a plurality of bristles 1104 arranged in an array, and a first moving plate 1105 is connected in the sealing cover 1101 through a moving mechanism 9, the top of the first moving plate 1105 is fixedly connected with a plurality of mounting plates 1106 arranged in an array, and the bottom of the mounting plate 1106 is fixedly connected with an emergency lighting lamp 1107, the bottom of the mounting plate 1106 is fixedly connected with a plurality of mounting rods 1109 arranged in an array, and the bottom of the mounting rod 1109 is fixedly connected with a plurality of mounting rods 1109 arranged in an array. A ball 1110 is provided at the bottom, a backup power supply 1108 is provided in the sealing cover 1101, the backup power supply 1108 is fixed to the side wall of the offshore booster station body 1, and the emergency lighting lamp 1107 is electrically connected to the backup power supply 1108, and an exhaust mechanism 2 for extracting air from the sealing cover 1101 is provided below the sealing cover 1101, and a blowing mechanism 3 for blowing air to the emergency lighting lamp 1107 is provided below the sealing cover 1101. When emergency lighting is performed, the emergency lighting lamp 1107 can be extended from the sealing cover 1101 to ensure its normal lighting. At the same time, the surface of the emergency lighting lamp 1107 can be cleaned and blown to ensure its lighting effect and life; after use, the emergency lighting lamp 1107 can be moved to the sealing cover 1101 for sealing protection. At the same time, the air in the sealing cover 1101 is extracted to avoid pollution and corrosion to the emergency lighting lamp 1107, thereby ensuring its lighting effect and life.
[0020] See also Figure 4 and Figure 5The exhaust mechanism 2 includes a fixed cover 201 fixedly connected to the side wall of the offshore booster station body 1, and a sliding plate 202 is slidably connected to the fixed cover 201 through a first reset mechanism 4, and the movement of the sliding plate 202 is driven by a first pushing mechanism 5. An exhaust pipe 203 is fixedly connected between the fixed cover 201 and the sealing cover 1101, and a one-way valve is arranged in the exhaust pipe 203. After the emergency lighting lamp 1107 moves into the sealing cover 1101, the sliding plate 202 can be pushed downward along the fixed cover 201 by the first pushing mechanism 5, so that negative pressure is generated in the fixed cover 201. At the same time, the first one-way valve is opened, so that the air in the sealing cover 1101 can enter the fixed cover 201 through the exhaust pipe 203 for temporary storage, thereby avoiding pollution and corrosion to the emergency lighting lamp 1107 and ensuring its lighting effect and life.
[0021] See also Figure 5 and Fig.10 The blowing mechanism 3 includes an L-shaped tube 301 fixedly inserted at the bottom of the sealing cover 1101, and the lower end of the L-shaped tube 301 is fixedly inserted at the top of the fixed cover 201, and the side wall of the L-shaped tube 301 is fixedly inserted with a working cover 302, and a sliding block 303 is slidably connected in the working cover 302, a through hole 304 is opened at the top of the sliding block 303, and a first spring 305 is fixedly connected between the sliding block 303 and the working cover 302, and the movement of the sliding block 303 is pushed by the second pushing mechanism 6. When the emergency lighting lamp 1107 moves outward through the circular hole 1102, the sliding plate 202 can be reset upward under the action of the first reset mechanism 4, so that It is able to squeeze the air temporarily stored in the fixed cover 201. After the sealing plate 1103 rotates to a horizontal state, when the emergency lighting lamp 1107 abuts against and moves with the bristles 1104, the sliding block 303 can be pushed into the working cover 302 by the second pushing mechanism 6, so that the through hole 304 coincides with the L-shaped tube 301. At the same time, the first spring 305 is compressed. At this time, the compressed air squeezed in the fixed cover 201 can be blown out through the L-shaped tube 301, so that the emergency lighting lamp 1107, the bristles 1104 and the sealing plate 1103 can be blown and cleaned, so that the cleaning effect of the emergency lighting lamp 1107 is better, thereby ensuring its lighting effect and life.
[0022] See also Figure 5 The first reset mechanism 4 includes two symmetrically arranged T-shaped guide rods 401 fixedly connected to the bottom of the sliding plate 202, and the side walls of the T-shaped guide rods 401 are sleeved with connecting plates 402, and the connecting plates 402 are fixed to the bottom of the fixed cover 201, and the side walls of each T-shaped guide rod 401 are sleeved with second springs 403, which play a guiding and resetting role for the movement of the sliding plate 202.
[0023] See also Figure 5The first pushing mechanism 5 includes a mounting cover 501 fixedly inserted at the bottom of the sealing cover 1101, and a first inclined plate 502 is inserted in the mounting cover 501, and the bottom of the first inclined plate 502 is fixedly connected to the second movable plate 503, and the bottom of the second movable plate 503 is fixed to the top of the sliding plate 202. When the first movable plate 1105 continues to move, it can be against the first inclined plate 502, thereby pushing the second movable plate 503 to move downward, and driving the sliding plate 202 to move downward along the fixed cover 201 through the second movable plate 503.
[0024] See also Figure 5 The second pushing mechanism 6 includes a fixed block 601 fixedly connected to the side wall of the first movable plate 1105, and the side wall of the fixed block 601 is fixedly connected to the second inclined plate 602. When the emergency lighting lamp 1107 abuts against and moves with the bristles 1104, the sliding block 303 can slide along the second inclined plate 602 to the side wall of the fixed block 601. At this time, the sliding block 303 is pushed to move into the working cover 302.
[0025] See also Figure 7 and Figure 8 The rotating mechanism 7 includes two symmetrically arranged support blocks 701 fixedly connected to the side walls of the sealing cover 1101, and the opposite side walls of the two support blocks 701 are rotatably connected with the rotating blocks 703 through the rotating shaft 702, and the rotating blocks 703 are fixed to the bottom of the sealing plate 1103, and the side wall of the rotating shaft 702 is fixedly sleeved with a first gear 704, and the side wall of the support block 701 is connected with a rack 705 through the second reset mechanism 8, and the rack 705 is meshed with the first gear 704, and the side wall of the support block 701 is fixedly connected with a protective cover 706 to ensure the normal rotation of the sealing plate 1103.
[0026] See also Figure 8 The second reset mechanism 8 includes two symmetrically arranged mounting blocks 801 fixedly connected to the side walls of the support block 701, and the opposite side walls of the two mounting blocks 801 are fixedly connected to two symmetrically arranged guide rods 802, and the side wall of each guide rod 802 is sleeved with a slider 803, and the slider 803 is fixed to the side wall of the rack 705, and the side wall of each guide rod 802 is sleeved with a third spring 804, which plays a guiding and resetting role for the movement of the rack 705.
[0027] See also Figure 5 and Figure 6The moving mechanism 9 includes a fixed rod 901 fixedly connected between the sealing cover 1101 and the offshore substation body 1, and the first moving plate 1105 is sleeved on the side wall of the fixed rod 901. A threaded rod 902 is rotatably connected between the sealing cover 1101 and the offshore substation body 1, and the first moving plate 1105 is threadedly connected to the side wall of the threaded rod 902. The rotation of the threaded rod 902 is driven by the driving mechanism 10, and the threaded rod 902 is driven to rotate by the driving mechanism 10, thereby driving the first moving plate 1105 to move along the fixed rod 901. When the first moving plate 1105 moves, the emergency lighting 1107 can be driven to move through the mounting plate 1106.
[0028] See also Fig. 9 The driving mechanism 10 includes a gear ring 1001 fixedly sleeved on the side wall of the threaded rod 902, and the inner wall of the sealing cover 1101 is fixedly connected to a U-shaped plate 1002, and the side wall of the U-shaped plate 1002 is fixedly connected to a motor 1003, and the output end of the motor 1003 is fixedly connected to a second gear 1004, and the second gear 1004 is meshed with the gear ring 1001. When the motor 1003 is started, the rotation of the motor 1003 drives the rotation of the second gear 1004, thereby driving the gear ring 1001 and the threaded rod 902 to rotate, and then driving the first movable plate 1105 to move along the fixed rod 901.
[0029] Working principle: When in use, in the event of a power outage, when emergency lighting is needed, the emergency lighting lamp 1107 and the motor 1003 can be powered by the backup power supply 1108, and the motor 1003 can be started. The rotation of the motor 1003 drives the rotation of the second gear 1004, thereby driving the ring gear 1001 and the threaded rod 902 to rotate, and then drives the first movable plate 1105 to move along the fixed rod 901. When the first movable plate 1105 moves, it can drive the emergency lighting lamp 1107 to move through the mounting plate 1106. When the mounting plate 1106 butts against the end of the sealing plate 1103, it can push The sealing plate 1103 rotates outward along the rotating shaft 702. At the same time, when the rotating shaft 702 rotates, it can drive the first gear 704 to rotate and drive the rack 705 to move. The third spring 804 is compressed. After the sealing plate 1103 rotates, the ball 1110 can roll on the top of the sealing plate 1103. At this time, the bristles 1104 can be used to automatically clean the surface of the emergency lighting lamp 1107, and the emergency lighting lamp 1107 can be extended outward through the circular hole 1102. At this time, the emergency lighting lamp 1107 is powered by the backup power supply 1108 to realize emergency lighting and ensure the use effect; After the emergency lighting is completed, the first moving plate 1105 and the mounting plate 1106 can be driven to move and reset through the moving mechanism 9, and the emergency lighting lamp 1107 can be moved into the sealing cover 1101. At this time, the rack 705 can be moved and reset under the action of the third spring 804, and at the same time, the first gear 704 and the rotating shaft 702 are driven to rotate and reset, thereby driving the sealing plate 1103 to rotate and reset upward and block and seal the circular hole 1102, so that the emergency lighting lamp 1107 can be sealed and protected to ensure its lighting effect and life; When the first movable plate 1105 and the mounting plate 1106 drive the emergency lighting lamp 1107 to move into the sealing cover 1101, after the sealing plate 1103 rotates to reset and seals the circular hole 1102, when the first movable plate 1105 continues to move, it can abut against the first inclined plate 502, thereby pushing the second movable plate 503 to move downward, and driving the sliding plate 202 to move downward along the fixed cover 201 through the second movable plate 503. At the same time, the second spring 403 is compressed, at this time, negative pressure is generated in the fixed cover 201, and at the same time, the first one-way valve is opened, so that the air in the sealing cover 1101 can enter the fixed cover 201 through the exhaust pipe 203 for temporary storage, thereby avoiding pollution and corrosion to the emergency lighting lamp 1107 and ensuring its lighting effect and life; Furthermore, when the emergency lighting lamp 1107 moves outward through the circular hole 1102, the first movable plate 1105 moves toward the direction close to the working cover 302. When the first movable plate 1105 is separated from the first inclined plate 502, the sliding plate 202 can move downward and reset under the action of the second spring 403, so as to squeeze the air temporarily stored in the fixed cover 201. After the sealing plate 1103 rotates to a horizontal state, when the emergency lighting lamp 1107 contacts and moves with the bristles 1104, the sliding block 303 can Slide along the second inclined plate 602 to the side wall of the fixed block 601. At this time, push the sliding block 303 to move into the working cover 302, so that the through hole 304 coincides with the L-shaped tube 301. At the same time, the first spring 305 is compressed. At this time, the compressed air squeezed in the fixed cover 201 can be blown out through the L-shaped tube 301, so that the emergency lighting lamp 1107, the bristles 1104 and the sealing plate 1103 can be blown and cleaned, so that the cleaning effect of the emergency lighting lamp 1107 is better, and its lighting effect and life are guaranteed.
[0030] The standard parts used in the present invention can all be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the prior art. Machinery, parts and equipment all adopt conventional models in the prior art, and the circuit connection adopts the conventional connection method in the prior art, which will not be described in detail here. The content not described in detail in this specification belongs to the prior art known to professional and technical personnel in this field.
[0031] The present invention and its embodiments are described above, and such description is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if ordinary technicians in the field are inspired by it, without departing from the purpose of the invention, they can design a structure and embodiment similar to the technical solution without creativity, which should belong to the protection scope of the present invention.
Claims
1. An offshore booster station, comprising an emergency lighting device (11) arranged on a side wall of an offshore booster station body (1), characterized in that: The emergency lighting device (11) comprises a plurality of sealing covers (1101) fixedly connected to the side wall of an offshore booster station body (1), and the side wall of each sealing cover (1101) is provided with a plurality of circular holes (1102) arranged in an array, the outer side wall of the circular hole (1102) is provided with a sealing plate (1103), and the sealing plate (1103) is rotatably connected to the outer side wall of the sealing cover (1101) via a rotating mechanism (7), the end of the sealing plate (1103) is fixedly connected to a plurality of bristles (1104) arranged in an array, and a first movable plate (1105) is connected to the inside of the sealing cover (1101) via a moving mechanism (9), the top of the first movable plate (1105) is fixedly connected to a plurality of mounting plates (1106) arranged in an array, and the mounting plate (1106) is fixedly connected to the top of the first movable plate (1105), and the mounting plate (1106) is fixedly connected to the outer side wall of the sealing cover (1101) via a rotating mechanism (7). 06) is fixedly connected to the bottom of an emergency lighting lamp (1107), a plurality of array-arranged mounting rods (1109) are fixedly connected to the bottom of the mounting plate (1106), and a ball (1110) is arranged at the bottom of the mounting rod (1109), a backup power supply (1108) is arranged in the sealing cover (1101), the backup power supply (1108) is fixed to the side wall of the offshore booster station body (1), and the emergency lighting lamp (1107) is electrically connected to the backup power supply (1108), an exhaust mechanism (2) for extracting air from the sealing cover (1101) is arranged below the sealing cover (1101), and an air blowing mechanism (3) for blowing air into the emergency lighting lamp (1107) is arranged below the sealing cover (1101).
2. The offshore booster station according to claim 1, characterized in that: The air extraction mechanism (2) comprises a fixed cover (201) fixedly connected to the side wall of the offshore booster station body (1), and a sliding plate (202) is slidably connected inside the fixed cover (201) via a first reset mechanism (4), and the movement of the sliding plate (202) is driven by a first driving mechanism (5). An air extraction pipe (203) is fixedly connected between the fixed cover (201) and the sealing cover (1101), and a one-way valve is provided inside the air extraction pipe (203).
3. The offshore booster station according to claim 2, characterized in that: The blowing mechanism (3) comprises an L-shaped tube (301) fixedly inserted at the bottom of the sealing cover (1101), and the lower end of the L-shaped tube (301) is fixedly inserted at the top of the fixed cover (201), a working cover (302) is fixedly inserted at the side wall of the L-shaped tube (301), and a sliding block (303) is slidably connected inside the working cover (302), a through hole (304) is opened at the top of the sliding block (303), and a first spring (305) is fixedly connected between the sliding block (303) and the working cover (302), and the movement of the sliding block (303) is driven by a second driving mechanism (6).
4. The offshore booster station according to claim 2, characterized in that: The first reset mechanism (4) comprises two symmetrically arranged T-shaped guide rods (401) fixedly connected to the bottom of the sliding plate (202), and the side walls of the T-shaped guide rods (401) are sleeved with connecting plates (402), the connecting plates (402) are fixed to the bottom of the fixed cover (201), and the side walls of each T-shaped guide rod (401) are sleeved with a second spring (403).
5. The offshore booster station according to claim 2, characterized in that: The first pushing mechanism (5) comprises a mounting cover (501) fixedly inserted at the bottom of the sealing cover (1101), and a first inclined plate (502) is inserted in the mounting cover (501), the bottom of the first inclined plate (502) is fixedly connected to a second movable plate (503), and the bottom of the second movable plate (503) is fixed to the top of the sliding plate (202).
6. The offshore booster station according to claim 3, characterized in that: The second pushing mechanism (6) comprises a fixed block (601) fixedly connected to the side wall of the first movable plate (1105), and the side wall of the fixed block (601) is fixedly connected to the second inclined plate (602).
7. The offshore booster station according to claim 1, characterized in that: The rotating mechanism (7) comprises two symmetrically arranged support blocks (701) fixedly connected to the side walls of the sealing cover (1101); the opposite side walls of the two support blocks (701) are rotatably connected to a rotating block (703) via a rotating shaft (702); the rotating block (703) is fixed to the bottom of the sealing plate (1103); a first gear (704) is fixedly sleeved on the side wall of the rotating shaft (702); the side wall of the support block (701) is connected to a rack (705) via a second reset mechanism (8); the rack (705) is meshed with the first gear (704); and the side wall of the support block (701) is fixedly connected to a protective cover (706).
8. The offshore booster station according to claim 7, characterized in that: The second reset mechanism (8) comprises two symmetrically arranged mounting blocks (801) fixedly connected to the side walls of the support block (701), and the opposite side walls of the two mounting blocks (801) are fixedly connected to two symmetrically arranged guide rods (802), the side walls of each of the guide rods (802) are sleeved with a slider (803), the slider (803) is fixed to the side wall of the rack (705), and the side walls of each of the guide rods (802) are sleeved with a third spring (804).
9. The offshore booster station according to claim 1, characterized in that: The moving mechanism (9) comprises a fixed rod (901) fixedly connected between the sealing cover (1101) and the offshore booster station body (1), and a first moving plate (1105) is sleeved on the side wall of the fixed rod (901); a threaded rod (902) is rotatably connected between the sealing cover (1101) and the offshore booster station body (1), and the first moving plate (1105) is threadedly connected to the side wall of the threaded rod (902); the rotation of the threaded rod (902) is driven by the driving mechanism (10).
10. An offshore booster station according to claim 9, characterized in that: The driving mechanism (10) comprises a gear ring (1001) fixedly sleeved on the side wall of the threaded rod (902), and the inner side wall of the sealing cover (1101) is fixedly connected to a U-shaped plate (1002), the side wall of the U-shaped plate (1002) is fixedly connected to a motor (1003), the output end of the motor (1003) is fixedly connected to a second gear (1004), and the second gear (1004) is meshed with the gear ring (1001).