Anti-corrosion offshore wind power cooling device

By designing a corrosion-resistant main body and a filtration device, the problem of sodium ion corrosion in offshore wind power cooling equipment was solved, achieving equipment stability and efficient cooling.

CN120915058BActive Publication Date: 2025-12-12ZHANGJIAGANG HENGQIANG COOLING EQUIP
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Patent Information

Application Number
CN202511435135.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-09
Publication Date
2025-12-12
Estimated Expiration
2045-10-09

AI Technical Summary

Technical Problem

Traditional offshore wind power cooling equipment suffers from corrosion due to the absorption of sodium ions from seawater, affecting the stability of the equipment.

Method used

A corrosion-resistant offshore wind power cooling device was designed, comprising a corrosion-resistant main body, a filtration device, and a cooling main body. The filtration device removes corrosive ions to prevent corrosion of the cooling main body, and the device utilizes an exhaust system and a ventilation system to achieve cooling.

Benefits of technology

It effectively prevents corrosion of cooling equipment, improves equipment stability and service life, and achieves efficient cooling effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120915058B_ABST
Patent Text Reader

Abstract

The application relates to the field of motor cooling technology, in particular to a corrosion-proof offshore wind power cooling device, which comprises a base, a corrosion-proof main body, a filtering device and a cooling main body. The base bottom is fixedly connected with a support frame. The base side is provided with a top cover. The top cover top is fixedly connected with fixed blocks on the left and right sides. The fixed blocks are penetrated with fixed bolts which are threadedly connected with the base. In the application, the base, the top cover, the fixed blocks, the fixed bolts, the support frame, the corrosion-proof main body, the filtering device, the cooling main body, the air outlet pipeline, the air extraction equipment and the air exhaust device are arranged. The air exhaust device can extract heat into the cooling main body. The air extraction equipment can extract low-temperature external air into the cooling main body through the corrosion-proof main body and the filtering device, so as to cool the offshore wind power. Meanwhile, the corrosion-proof main body can absorb corrosion ions in the air, preventing the cooling main body from being corroded.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of motor cooling, in particular to a corrosion-resistant offshore wind power cooling device. BACKGROUND

[0002] Offshore wind power refers to a power generation mode of generating electric energy through offshore wind power plants, offshore wind power has the characteristics of rich resources, high power utilization hours, no land occupation and suitability for large-scale development, is the latest frontier of global wind power development, and a large amount of heat is generated when wind power is running, at this time, the wind power needs to be cooled by a cooling device to ensure that the offshore wind power can stably run.

[0003] In use, the traditional offshore wind power cooling device usually directly pumps the air outside the offshore wind power to the inside of the offshore wind power to cool the offshore wind power, at this time, because seawater contains a large amount of sodium ions, the sodium ions diffuse into the air after the seawater evaporates, and the cooling device is corroded after absorbing a large amount of sodium ions, thereby affecting the stability of the use of the cooling device, therefore, the corrosion-resistant offshore wind power cooling device is proposed for the above problems. SUMMARY

[0004] The purpose of the application is to provide a corrosion-resistant offshore wind power cooling device to solve the problem that sodium ions in seawater can cause the cooling device to be corroded and affect the stability of the use of the cooling device.

[0005] To achieve the above purpose, the application provides the following technical scheme:

[0006] A corrosion-resistant offshore wind power cooling device, comprising a base, a corrosion-resistant main body, a filtering device and a cooling main body, the bottom of the base is fixedly connected with a support frame, the base is provided with a top cover on one side, the top cover is fixedly connected with a fixed block on the top left and right sides, the fixed block is provided with a fixed bolt penetratingly arranged in the base and threadedly connected with the base, the corrosion-resistant main body is installed in the right side of the base, the cooling main body is installed in the left side of the base, the filtering device is installed between the corrosion-resistant main body and the cooling main body, the top left side of the top cover is fixedly connected with an air outlet pipeline in communication with the cooling main body, the left side of the cooling main body is provided with a gas suction device fixedly connected with the base, and the top of the air outlet pipeline is fixedly connected with an air exhaust device.

[0007] The anticorrosion body comprises a containing shell, a first air inlet pipe, a second air inlet pipe, a U-shaped pipe, an external thread ring and a mounting cover, the bottom of the containing shell is fixedly connected with the base, the right top of the containing shell is fixedly connected with the first air inlet pipe, the right top of the containing shell is fixedly connected with the second air inlet pipe, the left top of the containing shell is fixedly connected with the U-shaped pipe, the rear top of the containing shell is fixedly connected with the external thread ring which is in communication with each other, the mounting cover is threadedly connected with the outside of the external thread ring, and the inner top of the mounting cover is provided with a sealing plate which is tightly attached to the external thread ring.

[0008] Preferably, the anticorrosion body further comprises a drainage body and a detection device, the right bottom of the containing shell is fixedly connected with the drainage body, the outside of the drainage body is fixedly connected with the base, the containing shell is provided with the detection device, the upper side of the outside of the detection device is fixedly connected with the mounting cover, the inner side of the sealing plate is tightly attached to the detection device, the top of the detection device is provided with an observation plate which is transparent, and the outside of the observation plate is fixedly connected with the top cover.

[0009] Preferably, the first air inlet pipes and the second air inlet pipes are evenly distributed on the outside of the containing shell, and the first air inlet pipes and the second air inlet pipes are fixedly connected with the base at the ends away from the containing shell.

[0010] Preferably, the filter device comprises a connecting shell, a limiting frame, a drying plate, a connecting plate, a clamping bolt, a nut, a mounting body and a connecting body, one side of the connecting shell is fixedly connected with the containing shell, the top of the connecting shell is fixedly connected with the U-shaped pipes which are in communication with each other and evenly distributed, the connecting shell is fixedly connected with the limiting frame inside, the side of the limiting frame away from the containing shell is provided with the drying plate, the side of the drying plate away from the limiting frame is provided with the mounting body, one side of the mounting body is arranged in the connecting shell, the connecting plates are arranged on the front and rear sides of the connecting shell, the clamping bolts which are evenly distributed are arranged in the connecting plates, the right ends of the clamping bolts are threadedly connected with the nuts, the left sides of the nuts are fixedly connected with the connecting plates which are fixedly connected with the connecting shell, the mounting body is provided with the connecting bodies which are evenly distributed, one end of the connecting body away from the mounting body is arranged on one side of the cooling body, and the left side of the drying plate is fixedly connected with a pull ring.

[0011] Preferably, the mounting body comprises a fixed plate, a fixed frame, a push plate, a push frame, a first rubber frame, a second rubber frame, a first support frame, a mounting plate and a second support frame, a connecting body is provided through the fixed plate, the fixed frame is fixedly connected to the right side of the fixed plate, the mounting plate is fixedly connected to the side away from the fixed plate in the fixed frame, the first rubber frame is provided outside the mounting plate, the first support frame is provided in the first rubber frame, one side of the first support frame is fixedly connected with the mounting plate, the second rubber frame is fixedly connected outside the first rubber frame, the second support frame is provided in the second rubber frame, the first rubber frame is tightly attached to the connecting shell outside, the second rubber frame is tightly attached to the fixed frame and the connecting shell on the left and right sides, the push plate is fixedly connected to the right side of the fixed plate, the push frame is fixedly connected to the side away from the fixed plate of the push plate, the drying plate is tightly attached to the side away from the push plate of the push frame, and the connecting plate is fixedly connected to the front and rear sides of the fixed frame.

[0012] Preferably, the cooling body comprises a right side plate, a left side plate, an assembly plate, a ventilation shell, an air inlet pipeline, a rubber ring, a heat conduction pipe and a heat conduction fin, the left side plate is provided on the left side of the right side plate, the assembly plate is fixedly connected to the front and rear sides between the right side plate and the left side plate, the ventilation shell is fixedly connected to the upper and lower sides between the right side plate and the left side plate, the heat conduction pipe is fixedly connected between the two ventilation shells and is vertically arranged and uniformly distributed, the heat conduction fin is fixedly connected to the outside of the heat conduction pipe and is uniformly distributed, the rubber ring is fixedly connected to the top of the upper ventilation shell and is in communication with the ventilation shell, the air outlet pipeline is tightly attached in the rubber ring, the air inlet pipeline is fixedly connected to the bottom of the lower ventilation shell and is in communication, the air inlet pipeline is fixedly connected to the base outside, the connecting body is uniformly arranged in the right side plate, and the air extraction equipment is fixedly connected in the left side plate.

[0013] Preferably, the connecting body comprises a connecting pipe, a limiting ring and a rubber ring, the left end of the connecting pipe is fixedly connected with the right side plate, the outer side of the end away from the right side plate of the connecting pipe is fixedly connected with the limiting ring, the end of the connecting pipe fixedly connected with the limiting ring penetrates through the fixed plate, the limiting ring is provided with the rubber ring on one side, and the rubber ring is tightly combined with the limiting ring and the fixed plate on the left and right sides.

[0014] Compared with the prior art, the application has the following beneficial effects:

[0015] 1、The application, by setting the base, top cover, fixed block, fixed bolt, support frame, corrosion-resistant main body, filter device, cooling main body, air outlet pipeline, air extraction equipment and exhaust device, the exhaust device can send heat to the cooling main body, then through the air extraction equipment, the low-temperature outside air is extracted into the cooling main body through the corrosion-resistant main body and the filter device, so as to realize the cooling of offshore wind power, and the corrosion-resistant main body can absorb the corrosive ions in the air to prevent the cooling main body from being corroded; the filter device can filter the air passing through the corrosion-resistant main body to reduce the moisture entering the cooling main body, further reducing the corrosion of the cooling main body;

[0016] 2、The application, by setting the containing shell, drainage main body, first air inlet pipe, second air inlet pipe, U-shaped pipe, external thread ring, installation cover, detection equipment, sealing plate and observation plate, reaction solvent can be added in the containing shell, after the external air enters the containing shell through the first air inlet pipe and the second air inlet pipe, the corrosive chloride ions are removed by the reaction solvent, and then discharged through the U-shaped pipe to prevent the chloride ions from corroding offshore wind power and cooling equipment; at the same time, the detection equipment can detect the reaction solvent, making it convenient to replace the reaction solvent; when replacing, the waste water is discharged through the drainage main body, the new reaction solvent is injected into the containing shell through the external thread ring, and finally the installation cover is installed outside the external thread ring; at this time, the external thread ring and the installation cover are sealed by the sealing plate, making it convenient for air to flow in the containing shell; at the same time, the observation plate can facilitate the observation of the detection device display information, making it convenient to replace the reaction solvent in the first time;

[0017] 3、The application, by setting the connecting shell, limiting frame, drying plate, connecting plate, clamping bolt, nut, fixed plate, fixed frame, push plate, push frame, first rubber frame, second rubber frame, first support frame, mounting plate, second support frame, connecting pipe, limiting ring, rubber ring and pull ring, after the air is sent into the connecting shell through the U-shaped pipe, the air is dried and filtered by the drying plate, and then enters the cooling main body through the connecting pipe to cool the hot air in the cooling main body; at this time, the connecting shell and the fixed frame are double-sealed by the first rubber frame and the second rubber frame, and the limiting ring and the fixed plate are sealed by the rubber ring, ensuring that the air extraction equipment can drive the air into the cooling main body; at the same time, the first rubber frame and the second rubber frame are supported by the first support frame and the second support frame respectively, maintaining the shape of the first rubber frame and the second rubber frame, so that the first rubber frame and the second rubber frame can better tightly fit the connecting shell, improving the sealing effect; at the same time, the mounting plate can position the first rubber frame through the first support frame, so that the fixed frame can drive the first rubber frame and the second rubber frame to move; the fixed plate can drive the fixed frame to cooperate with the limiting frame to position and install the drying plate; when the drying plate needs to be replaced, the clamping nut is directly removed, the fixed plate is moved, and then the drying plate is taken out from the connecting shell for replacement through the pull ring.

[0018] 4、In the application, by setting the right side plate, left side plate, assembly plate, ventilation shell, air inlet pipeline, rubber ring, heat pipe, heat fin, air outlet pipeline and exhaust device, a heat exchange space can be formed in the right side plate, left side plate assembly plate and ventilation shell. The exhaust device draws and sends the heat in the offshore wind power heat source into the heat pipe through the air inlet pipeline and the air outlet pipeline, the heat pipe sends the heat into the heat fin, then the flowing air passes through the connecting pipe to send the heat in the heat fin out through the air extraction equipment, achieving heat dissipation, then the air in the heat pipe is discharged after cooling, and the rubber ring can seal the ventilation shell and the air outlet pipeline, facilitating the connection of the air outlet pipeline and the ventilation shell. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the application;

[0020] Figure 2 It is a schematic diagram of the installation structure of the top cover of the application;

[0021] Figure 3 It is a schematic diagram of the structure of the anti-corrosion main body of the application;

[0022] Figure 4 It is a schematic diagram of the installation structure of the detection equipment of the application;

[0023] Figure 5 It is a schematic diagram of the structure of the application Figure 4 at A;

[0024] Figure 6 It is a schematic diagram of the structure of the filter device of the application;

[0025] Figure 7 It is a schematic diagram of the assembly structure of the filter device of the application;

[0026] Figure 8 It is a schematic diagram of the installation structure of the connection main body of the application;

[0027] Figure 9 It is a schematic diagram of the structure of the application Figure 8 at B;

[0028] Figure 10 It is a schematic diagram of the rear view structure of the cooperation between the first rubber frame and the second rubber frame of the application;

[0029] Figure 11 It is a schematic diagram of the installation rear view structure of the pull ring of the application;

[0030] Figure 12 It is a schematic diagram of the structure of the cooling main body of the application;

[0031] Figure 13It is the installation structure schematic diagram of the heat pipe of the application;

[0032] Figure 14 It is the installation structure schematic diagram of the ventilation shell of the application;

[0033] Figure 15 It is the cooperation structure schematic diagram of the air inlet pipeline and the base of the application.

[0034] In the figure: 1, base; 2, top cover; 3, fixed block; 4, fixed bolt; 5, support frame; 6, anti-corrosion main body; 61, containing shell; 62, drainage main body; 63, first air inlet pipe; 64, second air inlet pipe; 65, U-shaped pipe; 66, external thread ring; 67, installation cover; 68, detection equipment; 69, sealing plate; 7, filtering device; 71, connecting shell; 72, limiting frame; 73, drying plate; 74, connecting plate; 75, clamping bolt; 76, nut; 77, installation main body; 771, fixed plate; 772, fixed frame; 773, push plate; 774, push frame; 775, first rubber frame; 776, second rubber frame; 777, first support frame; 778, installation plate; 779, second support frame; 78, connecting main body; 781, connecting pipe; 782, limiting ring; 783, rubber ring; 79, pull ring; 8, cooling main body; 81, right side plate; 82, left side plate; 83, assembly plate; 84, ventilation shell; 85, air inlet pipeline; 86, rubber ring; 87, heat pipe; 88, heat fin; 9, air outlet pipeline; 10, observation plate; 11, air extraction equipment; 12, exhaust device. DETAILED DESCRIPTION

[0035] Please refer to Figures 1-15 The application provides a technical solution:

[0036] The utility model provides an anticorrosive offshore wind power cooling device, including base 1, anticorrosive main body 6, filter device 7 and cooling main body 8, the bottom fixedly connected with support frame 5 is installed on one side of base 1, and the top left and right sides of top cover 2 are all fixedly connected with fixed block 3, and the fixed bolt 4 of screw connection with base 1 is set in fixed block 3 and penetrates, the anticorrosive main body 6 is installed in the right side in base 1, and the cooling main body 8 is installed in the left side in base 1, and the filter device 7 is installed between anticorrosive main body 6 and cooling main body 8, and the left side fixedly connected with the exhaust pipe 9 of cooling main body 8 is connected with the top of top cover 2, and the left side cooling main body 8 is installed with the exhaust equipment 11 of fixed connection with base 1, and the exhaust device 12 is fixedly connected with the top of exhaust pipe 9, through this setting, the exhaust device 12 can send heat to cooling main body 8, and then the air of low temperature of outside is sent to cooling main body 8 through anticorrosive main body 6 and filter device 7 by the exhaust equipment 11, to realize the cooling of offshore wind power, and anticorrosive main body 6 can absorb the corrosion ion in air, prevents cooling main body 8 from being corroded, and filter device 7 can filter the air of anticorrosive main body 6, reduces the moisture of entering cooling main body 8, further reduces the corrosion of cooling main body 8;

[0037] As Figures 1-5As shown, the corrosion prevention body 6 includes a containing shell 61, a drainage body 62, a first air inlet pipe 63, a second air inlet pipe 64, a U-shaped pipe 65, an external thread ring 66, a mounting cover 67 and a detection device 68, the bottom of the containing shell 61 is fixedly connected with the base 1, the top right side of the containing shell 61 is fixedly connected with the first air inlet pipe 63, the top right side of the containing shell 61 is fixedly connected with the second air inlet pipe 64, the top left side of the containing shell 61 is fixedly connected with the U-shaped pipe 65, the top rear side of the containing shell 61 is fixedly connected with the external thread ring 66 which is in communication with each other, the mounting cover 67 is threadedly connected with the outside of the external thread ring 66, the inner top of the mounting cover 67 is provided with a sealing plate 69 which is tightly attached to the external thread ring 66, the right bottom of the containing shell 61 is fixedly connected with the drainage body 62, the outside of the drainage body 62 is fixedly connected with the base 1, the containing shell 61 is provided with the detection device 68, the outside of the detection device 68 is fixedly connected with the mounting cover 67, the sealing plate 69 is tightly attached to the detection device 68, the top of the detection device 68 is provided with an observation plate 10 which is transparent, the outside of the observation plate 10 is fixedly connected with the top cover 2, the first air inlet pipes 63 and the second air inlet pipes 64 are evenly distributed on the outside of the containing shell 61, the U-shaped pipes 65 are evenly distributed on the outside of the containing shell 61, the ends of the first air inlet pipes 63 and the second air inlet pipes 64 away from the containing shell 61 are fixedly connected with the base 1, through this arrangement, the reaction solvent can be added into the containing shell 61, after the external air enters the containing shell 61 through the first air inlet pipes 63 and the second air inlet pipes 64, the corrosive chloride ions are removed by the reaction solvent, and then are discharged through the U-shaped pipes 65, preventing the chloride ions from corroding the offshore wind power and the cooling equipment, at the same time, the reaction solvent can be detected by the detection device 68, facilitating the replacement of the reaction solvent, when replacing, the waste water is discharged through the drainage body 62, the new reaction solvent is injected into the containing shell 61 through the external thread ring 66, finally the mounting cover 67 is mounted on the outside of the external thread ring 66, at this time, the external thread ring 66 and the mounting cover 67 are sealed by the sealing plate 69, facilitating the air flow in the containing shell 61, at the same time, the display information of the detection device can be observed through the observation plate 10, facilitating the replacement of the reaction solvent in the first time.

[0038] As Figures 1-11As shown, the filter device 7 includes a connecting shell 71, a limiting frame 72, a drying plate 73, a connecting plate 74, a clamping bolt 75, a nut 76, a mounting body 77 and a connecting body 78, one side of the connecting shell 71 is fixedly connected with the containing shell 61, the top of the connecting shell 71 is fixedly connected with the U-shaped pipes 65 which are mutually connected and uniformly distributed, the connecting shell 71 is fixedly connected with the limiting frame 72 inside, the side of the limiting frame 72 away from the containing shell 61 is provided with the drying plate 73, the side of the drying plate 73 away from the limiting frame 72 is provided with the mounting body 77, one side of the mounting body 77 is arranged in the connecting shell 71, the mounting body 77 is provided with the connecting plates 74 on the front and back sides, the clamping bolts 75 which are uniformly distributed are arranged in the connecting plates 74, the right outer side of the clamping bolt 75 is threadedly connected with the nut 76, the left side of the nut 76 is fixedly connected with the connecting plate 74 fixedly connected on the connecting shell 71, the connecting bodies 78 which are uniformly distributed are arranged in the mounting body 77, one end of the connecting body 78 away from the mounting body 77 is arranged on one side of the cooling body 8, the left side of the drying plate 73 is fixedly connected with the pull ring 79, the mounting body 77 includes a fixed plate 771, a fixed frame 772, a push plate 773, a push frame 774, a first rubber frame 775, a second rubber frame 776, a first support frame 777, a mounting plate 778 and a second support frame 779, the connecting bodies 78 are arranged in the fixed plate 771, the right side of the fixed plate 771 is fixedly connected with the fixed frame 772, the side of the fixed frame 772 away from the fixed plate 771 is fixedly connected with the mounting plates 778 which are uniformly distributed, the first rubber frame 775 is arranged on the outer side of the mounting plate 778, the first support frame 777 is arranged in the first rubber frame 775, one side of the first support frame 777 is fixedly connected with the mounting plate 778, the second rubber frame 776 is fixedly connected on the outer side of the first rubber frame 775, the second support frame 779 is arranged in the second rubber frame 776, the outer side of the first rubber frame 775 is tightly attached with the connecting shell 71, the left and right sides of the second rubber frame 776 are tightly attached with the fixed frame 772 and the connecting shell 71 respectively, the push plates 773 which are uniformly distributed are fixedly connected with the right side of the fixed plate 771, the push frame 774 is fixedly connected with the side of the push plate 773 away from the fixed plate 771, the side of the push frame 774 away from the push plate 773 is tightly attached with the drying plate 73, the connecting plates 74 are fixedly connected with the front and back sides of the fixed frame 772, through the above arrangement, after the air is sent into the connecting shell 71 through the U-shaped pipes 65, the air can be dried and filtered through the drying plate 73, then enters into the cooling body 8 through the connecting pipe 781 to cool the hot air in the cooling body 8, at this time, the connecting shell 71 and the fixed frame 772 are double-sealed through the first rubber frame 775 and the second rubber frame 776, the limiting ring 782 and the fixed plate 771 are sealed through the rubber ring 783, which ensures that the air can be brought into the cooling body 8 by the air extraction device 11, and the first rubber frame 775 and the second rubber frame 776 are supported by the first support frame 777 and the second support frame 779 respectively,The shapes of the first rubber frame 775 and the second rubber frame 776 are maintained so that the first rubber frame 775 and the second rubber frame 776 can better tightly adhere to the connecting shell 71, the sealing effect is improved, the mounting plate 778 can position the first rubber frame 775 through the first supporting frame 777, the fixing frame 772 can drive the first rubber frame 775 and the second rubber frame 776 to move, the fixing plate 771 can drive the fixing frame 772 to cooperate with the limiting frame 72 to position and install the drying plate 73, when the drying plate 73 needs to be replaced, the clamping nut 76 is directly disassembled, the fixing plate 771 is moved, and then the drying plate 73 is taken out from the connecting shell 71 through the pull ring 79 to replace.

[0039] As Figure 1 , Figure 2 , Figure 7 , Figure 8 , Figure 9 , Figure 12 , Figure 13 , Figure 14 and Figure 15As shown, the cooling main body 8 comprises a right side plate 81, a left side plate 82, an assembly plate 83, a ventilation shell 84, an air inlet pipeline 85, a rubber ring 86, a heat conduction pipe 87 and a heat conduction fin 88, the left side of the right side plate 81 is provided with the left side plate 82, the assembly plate 83 is fixedly connected between the right side plate 81 and the left side plate 82 on both front and back sides, the ventilation shell 84 is fixedly connected between the right side plate 81 and the left side plate 82 on both upper and lower sides, the heat conduction pipes 87 which are vertically arranged and uniformly distributed are fixedly connected between the two ventilation shells 84, the heat conduction fins 88 which are uniformly distributed are fixedly connected outside the heat conduction pipes 87, the rubber ring 86 which is in communication with the ventilation shell 84 is fixedly connected to the top of the upper ventilation shell 84, the air outlet pipeline 9 is tightly fitted in the rubber ring 86, the air inlet pipeline 85 which is in communication is fixedly connected to the bottom of the lower ventilation shell 84, the air inlet pipeline 85 is fixedly connected outside the base 1, the connecting main body 78 which is uniformly distributed is installed in the right side plate 81, the air exhaust equipment 11 is fixedly connected in the left side plate 82, the connecting main body 78 comprises a connecting pipe 781, a limiting ring 782 and a rubber ring 783, the left end of the connecting pipe 781 is fixedly connected with the right side plate 81, the limiting ring 782 is fixedly connected outside the end of the connecting pipe 781 away from the right side plate 81, the end of the connecting pipe 781 fixedly connected with the limiting ring 782 penetrates through the fixed plate 771, the rubber ring 783 is arranged on one side of the limiting ring 782, the rubber ring 783 is tightly combined with the limiting ring 782 and the fixed plate 771 on both sides, through the above arrangement, a heat exchange space is formed by the right side plate 81, the left side plate 82, the assembly plate 83 and the ventilation shell 84, the heat in the offshore wind power heat source is pumped into the heat conduction pipe 87 through the air inlet pipeline 85 and the air outlet pipeline 9, the heat is sent to the heat conduction fin 88 by the heat conduction pipe 87, then the flowing air sends the heat in the heat conduction fin 88 out through the air exhaust equipment 11 by the connecting pipe 781, heat dissipation is realized, then the air in the heat conduction pipe 87 after cooling is discharged, at the same time, the rubber ring 86 can seal the upper ventilation shell 84 and the air outlet pipeline 9, which facilitates the connection of the air outlet pipeline 9 and the upper ventilation shell 84.

[0040] Work flow: when the anticorrosion offshore wind power cooling device is used, first, the anticorrosion offshore wind power cooling device is installed in the appropriate position in the offshore wind power device through the support frame 5, then the exhaust pipe is connected with the air extraction device 11, then the air inlet pipe 85 is connected with the heat source through the pipeline, then the power is turned on, the air extraction device 11 and the exhaust device 12 are started through the external controller, the exhaust device 12 extracts the heat of the heat source through the pipeline, at this time the heat enters the air inlet shell 84 below through the air inlet pipe 85, then the heat enters the heat conducting pipe 87 through the air inlet shell 84, the heat conducting pipe 87 sends the heat into the heat conducting fin 88, at the same time under the action of the air extraction device 11, the normal temperature air outside the wind power device enters the first air inlet pipe 63 and the second air inlet pipe 64, then the air enters the reaction solvent in the containing shell 61, the chloride ions in the air which cause corrosion are absorbed by the reaction solvent, then the air enters the connecting shell 71 through the U-shaped pipe 65, after the air is dried and filtered by the physical drying agent and activated carbon in the drying plate 73 in the connecting shell 71, the air moves to the outside of the heat conducting pipe 87 through the connecting pipe 781, at this time the heat in the heat conducting fin 88 enters the air sent by the connecting pipe 781, after the air absorbs the heat, the air extraction device 11 discharges the heated air to the outside of the wind power device through the exhaust pipe, so as to realize the heat dissipation of the wind power device, prevent the corrosion of the wind power device and the cooling device by removing the chloride ions, at this time the reaction solvent in the containing shell 61 is detected by the detection device 68, and the detection device 68 displays the detection result through the screen arranged on the top, then the detection device 68 is observed through the observation plate 10, after the reaction solvent is observed to be invalid, the air extraction device 11 and the exhaust device 12 are turned off through the external controller, then the fixing bolt 4 is removed, at this time the top cover 2 is removed from the base 1, the drain main body 62 is opened, the liquid in the containing shell 61 is discharged, then the drain main body 62 is closed, the mounting cover 67 is removed from the outside of the external thread ring 66 by rotating the mounting cover 67, then the appropriate reaction solvent is added in the containing shell 61, at this time the reaction solvent is above the first air inlet pipe 63 and the second air inlet pipe 64 but below the U-shaped pipe 65, the detection device 68 is inserted into the reaction solvent in the containing shell 61, the mounting cover 67 is tightly attached to the external thread ring 66 by rotating the mounting cover 67, at this time the bottom of the sealing plate 69 is tightly attached to the external thread ring 66, so as to seal the mounting cover 67 and the external thread ring 66, when the drying plate 73 needs to be replaced, the clamping bolt 75 is removed, then the fixed plate 771 is moved to the left side, the fixed plate 771 moves outside the connecting pipe 781, then the drying plate 73 is taken out through the pull ring 79, the new drying plate 73 is put into the connecting shell 71, the fixed plate 771 is pushed, the fixed plate 771 pushes the fixed frame 772, the first rubber frame 775 and the second rubber frame 776 to move, the first rubber frame 775 is inserted into the connecting shell 71,At this time, the first rubber frame 775 is supported by the first support frame 777, so that the outer side of the first rubber frame 775 is tightly attached to the connecting shell 71 to realize sealing. With the movement of the fixed plate 771, the second rubber frame 776 is in contact with the connecting shell 71. Then the clamping bolt 75 is threaded through the connecting plate 74 and is screwed with the nut 76. The connecting plate 74 and the limiting frame 72 are pushed to move by the nut 76. The limiting frame 72 pushes the second rubber frame 776 to tightly attach to the connecting shell 71 to realize secondary sealing. At the same time, the limiting frame 72 drives the fixed plate 771 to move, so that the fixed plate 771 is tightly attached to the rubber ring 783 to realize sealing of the connecting pipe 781. In this way, the replacement of the drying plate 73 is completed.

[0041] The principles and implementation manners of the present application are described by applying specific examples in the present application. The above examples are only used to help understand the method of the present application and its core idea. The above description is only the preferred implementation manner of the present application. It should be pointed out that, due to the limited expression of the text, there are infinite specific structures in the objective world. For ordinary skilled in the art, some improvements, decorations or changes can be made without departing from the principles of the present application. The above technical features can also be combined in an appropriate manner. These improvements, decorations, changes or combinations, or the direct application of the inventive concept and technical solution to other occasions without improvement, shall be regarded as the protection scope of the present application.

Claims

1. A corrosion-resistant offshore wind power cooling device, comprising a base (1), a corrosion-resistant main body (6), a filter device (7), and a cooling main body (8), characterized in that: The base (1) is fixedly connected to a support frame (5) at the bottom. A top cover (2) is installed on one side of the base (1). Fixing blocks (3) are fixedly connected to the top left and right sides of the top of the top cover (2). Fixing bolts (4) that are threadedly connected to the base (1) are installed through the fixing blocks (3). An anti-corrosion body (6) is installed on the right side of the base (1). A cooling body (8) is installed on the left side of the base (1). A filter device (7) is installed between the anti-corrosion body (6) and the cooling body (8). An air outlet pipe (9) that is connected to the cooling body (8) is fixedly connected to the top left side of the top of the top cover (2). An air extraction device (11) that is fixedly connected to the base (1) is installed on the left side of the cooling body (8). An exhaust device (12) is fixedly connected to the top of the air outlet pipe (9). The corrosion-resistant body (6) includes a container shell (61), a first air inlet pipe (63), a second air inlet pipe (64), a U-shaped pipe (65), an external threaded ring (66), and a mounting cover (67). The bottom of the container shell (61) is fixedly connected to the base (1). The first air inlet pipe (63) is fixedly connected to the top right side of the container shell (61). The second air inlet pipe (64) is fixedly connected to the top right side of the container shell (61). The U-shaped pipe (65) is fixedly connected to the top left side of the container shell (61). The external threaded ring (66) is fixedly connected to the rear side of the top of the container shell (61). The mounting cover (67) is threadedly connected to the outside of the external threaded ring (66). A sealing plate (69) that fits tightly against the external threaded ring (66) is provided inside the top of the mounting cover (67). The filter device (7) includes a connecting shell (71), a limiting frame (72), a drying plate (73), a connecting plate (74), clamping bolts (75), nuts (76), an installation body (77), and a connecting body (78). One side of the connecting shell (71) is fixedly connected to the holding shell (61). The top of the connecting shell (71) is fixedly connected with interconnected and evenly distributed U-shaped tubes (65). The limiting frame (72) is fixedly connected inside the connecting shell (71). A drying plate (73) is provided on the side of the limiting frame (72) away from the holding shell (61). An installation body (77) is provided on the side of the drying plate (73) away from the limiting frame (72). The mounting body (77) is installed in the connecting shell (71) on one side. The front and rear sides of the mounting body (77) and the front and rear sides of the connecting shell (71) are equipped with connecting plates (74). The connecting plates (74) are provided with clamping bolts (75) that are evenly distributed. The right end of the clamping bolts (75) is threaded with a nut (76). The left side of the nut (76) is fixedly connected to the connecting plate (74) that is fixedly connected to the connecting shell (71). The mounting body (77) is equipped with connecting bodies (78) that are evenly distributed. The end of the connecting body (78) away from the mounting body (77) is installed on the side of the cooling body (8). The left side of the drying plate (73) is fixedly connected with a pull ring (79). The mounting body (77) includes a fixing plate (771), a fixing frame (772), a push plate (773), a push frame (774), a first rubber frame (775), a second rubber frame (776), a first support frame (777), a mounting plate (778), and a second support frame (779). A connecting body (78) is disposed through the fixing plate (771). The fixing frame (772) is fixedly connected to the right side of the fixing plate (771). Mounting plates (778) are evenly distributed and fixedly connected to the side of the fixing frame (772) away from the fixing plate (771). The first rubber frame (775) is disposed on the outside of the mounting plate (778). The first support frame (777) is disposed inside the first rubber frame (775). One side of the first support frame (777) is connected to the mounting plate (778). The mounting plate (778) is fixedly connected. A second rubber frame (776) is fixedly connected to the outside of the first rubber frame (775). A second support frame (779) is provided inside the second rubber frame (776). The outside of the first rubber frame (775) is tightly fitted with the connecting shell (71). The left and right sides of the second rubber frame (776) are tightly fitted with the fixing frame (772) and the connecting shell (71) respectively. A push plate (773) is fixedly connected to the right side of the fixing plate (771). A push frame (774) is fixedly connected to the side of the push plate (773) away from the fixing plate (771). The side of the push frame (774) away from the push plate (773) is tightly fitted with the drying plate (73). A connecting plate (74) is fixedly connected to both the front and rear sides of the fixing frame (772). The cooling body (8) includes a right side plate (81), a left side plate (82), an assembly plate (83), a vent shell (84), an air inlet pipe (85), a rubber ring (86), a heat-conducting pipe (87), and heat-conducting fins (88). The left side plate (82) is provided on the left side of the right side plate (81). The assembly plate (83) is fixedly connected to both the front and rear sides of the right side plate (81) and the left side plate (82). The vent shell (84) is fixedly connected to both the upper and lower sides of the right side plate (81) and the left side plate (82). A vertically arranged and evenly distributed heat-conducting pipe is fixedly connected between the two vent shells (84). (87), the heat pipe (87) is fixedly connected to the outside of the heat pipe (87) with uniformly distributed heat-conducting fins (88), the top of the upper vent shell (84) is fixedly connected to a rubber ring (86) that communicates with the vent shell (84), the rubber ring (86) is tightly fitted with an air outlet pipe (9), the bottom of the lower vent shell (84) is fixedly connected to an air inlet pipe (85) that communicates with the vent shell (84), the outside of the air inlet pipe (85) is fixedly connected to the base (1), the right side plate (81) is installed with a uniformly distributed connecting body (78), and the left side plate (82) is fixedly connected with an air extraction device (11). The connecting body (78) includes a connecting pipe (781), a limiting ring (782), and a rubber ring (783). The left end of the connecting pipe (781) is fixedly connected to the right side plate (81). The limiting ring (782) is fixedly connected to the outer side of the end of the connecting pipe (781) away from the right side plate (81). The end of the connecting pipe (781) fixedly connected to the limiting ring (782) passes through the fixing plate (771). A rubber ring (783) is provided on one side of the limiting ring (782). The two sides of the rubber ring (783) are tightly connected to the limiting ring (782) and the fixing plate (771), respectively.

2. The corrosion-resistant offshore wind power cooling equipment according to claim 1, characterized in that: The corrosion-resistant body (6) also includes a drainage body (62) and a testing device (68). The drainage body (62) is fixedly connected to the bottom right side of the container (61). The outer side of the drainage body (62) is fixedly connected to the base (1). The testing device (68) is installed inside the container (61). The upper outer side of the testing device (68) is fixedly connected to the mounting cover (67). The sealing plate (69) is tightly fitted to the testing device (68). The top of the testing device (68) is provided with a transparent observation plate (10). The outer side of the observation plate (10) is fixedly connected to the top cover (2).

3. The corrosion-resistant offshore wind power cooling equipment according to claim 2, characterized in that: Several first air inlet pipes (63) and second air inlet pipes (64) are evenly distributed on the outside of the container shell (61), and several U-shaped pipes (65) are evenly distributed on the outside of the container shell (61). The ends of the first air inlet pipes (63) and second air inlet pipes (64) away from the container shell (61) are fixedly connected to the base (1).

Citation Information

Patent Citations

  • Cooling system for offshore wind power generation unit

    CN102619707A

  • Offshore high-corrosion-resistance maintenance-free transformer for offshore wind power

    CN216749545U