LED water-cooling fish gathering lamp

By designing the water-cooled cooling system and side panel structure in the LED fish lamp, the high heat, weight and wind resistance problems of the high-power fish lamp are solved, and efficient and lightweight heat dissipation and wind resistance are achieved.

CN222978087UActive Publication Date: 2025-06-13ZHONGSHAN DONGXIANG INTELLIGENT LIGHTING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422309332.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-06-13
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The high-power LED fish pooling lamp generates a lot of heat during use, resulting in high heat dissipation costs and high self-weight. A single air-cooled or radiator is not enough to meet the heat dissipation needs, and the large-scale fish pooling lamp increases wind resistance when the fishing boat is traveling.

Method used

A LED water-cooled fish pool lamp is designed to achieve seawater cooling and heat dissipation by setting up side plates, main pipes, branch pipes, lamps and water pumps, combined with heat sinks to assist heat dissipation, and wind resistance is reduced through the side plates and roller structures.

Benefits of technology

It realizes an efficient and lightweight heat dissipation method, saves heat dissipation materials and costs, reduces self-weight, and effectively reduces the wind resistance of fishing boats when traveling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an LED water-cooling fish gathering lamp, and relates to the technical field related to lamps. The LED street lamp comprises two side plates, two main pipes, branch pipes, lamps, a rolling shaft and a water pump, a lower cross beam is fixed to the bottoms of the two side plates, the vertically-distributed main pipes are fixed in mounting lugs on the same side plate in a penetrating mode, and the transversely-arranged branch pipes are distributed between the two side plates at equal intervals. The two ends of each branch pipe penetrate through the two side plates respectively and are connected with the corresponding main pipe in a penetrating mode, and a set of lamps are arranged outside each branch pipe. The lamp comprises two lamp holders fixed outside the branch pipe, a lampshade is fixed between the two lamp holders, and an LED lamp tube is fixed between the two lamp holders in an inner cavity of the lampshade. By arranging the side plates, the header pipe, the branch pipes, the lamp bodies and the water pump, the problems that a high-power fish gathering lamp needs a more efficient and lighter heat dissipation mode, the heat dissipation mode is single, reasonable utilization of energy is lacked, and wind resistance is increased when a fishing boat advances due to the fact that the fish gathering lamp is generally accumulated are solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field related to lamps, and particularly relates to an LED water-cooled fish attracting lamp. Background Art

[0002] A fish attracting lamp refers to a lamp that uses light to attract or lure fish schools for convenient fishing or fishing operations. A small fish attracting lamp can be fixed on a fishing line for auxiliary fishing, and a large fish attracting lamp can be fixed on a fishing boat for auxiliary fishing. For a large fish attracting lamp, the heat generated during its operation is quite high. Therefore, the following drawbacks still exist in its actual use:

[0003] A high-power LED fish attracting lamp generates a large amount of heat during use, so a large amount of heat dissipation materials are required for heat dissipation treatment. The common methods are to increase the heat dissipation area (increase the radiator) or improve air flow (install a cooling fan), etc. However, these methods require the use of a large amount of heat dissipation materials, resulting in high costs and large self-weights. When used on a fishing boat, especially a small fishing boat, the center of the hull will move upward due to the increased self-weight. Therefore, a more lightweight heat dissipation method is needed;

[0004] Secondly, a single air-cooling or radiator heat dissipation method is not sufficient to meet the heat dissipation requirements. It is necessary to combine seawater or fresh water on the boat under limited conditions to increase the water-cooling heat dissipation effect, lacking a reasonable way to utilize energy;

[0005] Finally, because a large LED fish attracting lamp has a large volume and is usually of a square structure, it will generate a large wind resistance during travel. Content of the Utility Model

[0006] The purpose of the utility model is to provide an LED water-cooled fish attracting lamp. By setting side plates, main pipes, branch pipes, lamps, and a water pump, the problems of high-power fish attracting lamps requiring a more efficient and lightweight heat dissipation method, single heat dissipation method, lack of reasonable energy utilization, and increased wind resistance of large-volume fish attracting lamps during the travel of fishing boats are solved.

[0007] To solve the above technical problems, the utility model is realized through the following technical solutions:

[0008] The utility model is an LED water-cooled fish attracting lamp, including two side plates, two main pipes, branch pipes, lamps, a roller, and a water pump. An upper cross beam is fixedly connected to the tops of the two side plates, and a lower cross beam is fixedly connected to the bottoms of the two side plates. Mounting ears are fixedly arranged on the opposite sides of the two side plates. The main pipes vertically distributed are fixedly penetrated through the mounting ears on the same side plate. The horizontally arranged branch pipes are equidistantly distributed between the two side plates. The two ends of each branch pipe respectively penetrate through the two side plates and are connected to the corresponding main pipe in a through manner. A set of lamps is arranged outside each branch pipe;

[0009] The lamp includes two lamp holders fixed outside the branch pipe. A lamp cover is fixed between the two lamp holders. An LED lamp tube is fixed between the two lamp holders in the inner cavity of the lamp cover. A rear cover plate is fixed to the rear sides of the two lamp holders. The part of the branch pipe between the two lamp holders is located in the inner cavity of the lamp cover.

[0010] Furthermore, heat dissipation fins are fixedly arranged in a penetrating manner in the rear cover plate and are equidistantly distributed. A part of the heat dissipation fins extends into the inner cavity of the lamp cover and is sleeved and fixed outside the branch pipe. The other part of the heat dissipation fins penetrates through the rear cover plate and extends to the outside.

[0011] Furthermore, the length of the lamp is less than the length of the branch pipe, and the inner diameter of the branch pipe is less than the inner diameter of the main pipe.

[0012] Furthermore, the LED lamp tube is located at a position on the branch pipe far from the rear cover plate, and the LED lamp tube is closer to the front side surface of the lamp cover than the branch pipe.

[0013] Furthermore, a water pump is arranged below the lower cross beam, and a water outlet pipe is fixed to the water outlet end of the water pump. The upper end of the water outlet pipe is fixed to the bottom of a main pipe. The bottom of the other main pipe is a through water outlet, and the upper ends of the two main pipes are both closed ends.

[0014] Furthermore, two symmetrical ear plates are fixed to the bottom of the lower cross beam, and a roller is rotatably connected between the two ear plates. A towing rope is wound around the roller. One end of the towing rope is fixed to the fishing boat, and the other end of the towing rope is fixed to the water pump below it.

[0015] The utility model has the following beneficial effects:

[0016] By arranging the main pipe, the branch pipe, the lamp, and the water pump, the utility model solves the problem that a high-power fish attracting lamp requires a more efficient and more lightweight heat dissipation method. The water pump is placed in seawater to pump seawater, which is input into the main pipe through the water outlet pipe and then enters multiple branch pipes. The seawater flowing in the branch pipes takes away the heat generated during the operation of the lamp in the lamp, and then flows out through the other main pipe and falls back into the sea. Each time, cold seawater is sucked in to flow and take away heat, and it is assisted by heat dissipation fins for heat dissipation treatment. The overall heat dissipation is more efficient. The whole does not need to assemble more radiators, does not need more radiator consumables, saves material usage, reduces costs, reduces its own weight, and makes it more lightweight.

[0017] The utility model solves the problems of single heat dissipation method and lack of reasonable utilization of energy by setting a main pipe, branch pipes, lamps and a water pump. First, the water pump can be used to extract seawater, which flows into the branch pipes to take away the heat generated during the operation of the lamps, and then flows out through another main pipe and returns to the sea, realizing the effective utilization of natural seawater energy. Or the water pump can be connected to the fresh water tank on the fishing boat to heat the water temperature with the heat generated by the lamps, so that hot water at a certain temperature can be used on the boat, realizing the utilization of heat. Then, combined with heat sinks for auxiliary heat dissipation, multiple heat dissipation effects are achieved, and the energy is reasonably utilized.

[0018] The utility model solves the problem of increasing wind resistance when the large-volume fish aggregating lamp is moving on the fishing boat by setting side plates, lamps and branch pipes. The side plates are used to install the main pipe, several branch pipes are connected between the main pipes, a set of lamps is arranged outside each branch pipe, the lamps are integrally strip-shaped, and each lamp is independently arranged instead of the larger square structure, which can effectively reduce the wind resistance. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for the description of the embodiments will be briefly introduced below.

[0020] Figure 1 It is a rear view three-dimensional view of an LED water-cooled fish aggregating lamp;

[0021] Figure 2 It is a front view three-dimensional view of an LED water-cooled fish aggregating lamp;

[0022] Figure 3 It is a connection diagram of the side plate, the roller and the lower cross beam;

[0023] Figure 4 It is a connection diagram of the main pipe and the branch pipes;

[0024] Figure 5 It is a structural diagram of the lamp;

[0025] Figure 6 It is a structural diagram of the lamp after removing the lamp shade.

[0026] REFERENCE MARKS:

[0027] 1, side plate; 101, upper cross beam; 102, lower cross beam; 1021, ear plate; 103, mounting ear; 2, main pipe; 3, branch pipe; 4, lamp; 401, lamp base; 402, lamp shade; 403, rear cover plate; 404, heat sink; 405, LED lamp tube; 5, roller; 501, towing rope; 6, water pump; 601, water outlet pipe. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present utility model.

[0029] Please refer to Figure 1-6 As shown, the utility model is an LED water-cooled fish-attracting lamp, which includes two side plates 1, two main pipes 2, branch pipes 3, lamps 4, rollers 5 and water pumps 6. An upper cross beam 101 is fixedly arranged at the top of the two side plates 1 together, and a lower cross beam 102 is fixedly arranged at the bottom of the two side plates 1 together. Mounting ears 103 are fixedly arranged on the opposite sides of the two side plates 1. The main pipes 2 vertically distributed are fixedly arranged through the mounting ears 103 on the same side plate 1. The horizontally arranged branch pipes 3 are equidistantly distributed between the two side plates 1. The two ends of each branch pipe 3 respectively penetrate through the two side plates 1 and are connected to the corresponding main pipes 2 in a through manner. A set of lamps 4 is arranged outside each branch pipe 3;

[0030] The two side plates 1 are fixedly connected through the upper cross beam 101 and the lower cross beam 102 to form a square structure to ensure the stability of the overall structure. Then, the main pipes 2 are fixedly installed outside each side plate 1 through the mounting ears 103. The main pipes 2 are used for inputting and outputting cooling water to achieve the auxiliary effect of water-cooled heat dissipation. The cooling water entering one main pipe 2 will enter all the branch pipes 3. By using the circulation of the cooling water in the branch pipes 3, the heat in the corresponding lamps 4 is taken away and then output from the other main pipe 2;

[0031] The lamp 4 includes two lamp holders 401 fixed outside the branch pipe 3. A lamp cover 402 is fixed between the two lamp holders 401. An LED lamp tube 405 is fixed between the two lamp holders 401 in the inner cavity of the lamp cover 402. A rear cover plate 403 is fixed at the rear sides of the two lamp holders 401; A part of the branch pipe 3 between the two lamp holders 401 is located in the inner cavity of the lamp cover 402;

[0032] In the lamp 4, the LED lamp tube 405 is mainly used to generate light sources to attract fish schools, and cooperate with the lamp cover 402 for light irradiation. The rear cover plate 403 is installed behind the two lamp holders 401 for sealing. A large amount of heat generated during the operation of the LED lamp tube 405 is taken away by the cooling water flowing in the branch pipe 3.

[0033] The rear cover plate 403 is fixedly arranged with equally spaced heat dissipation fins 404 in a penetrating manner. A part of the heat dissipation fins 404 extends into the inner cavity of the lamp cover 402 and is sleeved and fixed outside the branch pipe 3. The other part of the heat dissipation fins 404 penetrates through the rear cover plate 403 and extends to the outside; Some of the heat generated by the LED lamp tube 405 is also guided and dissipated by the heat dissipation fins 404 for auxiliary heat dissipation. Moreover, the heat dissipation fins 404 are fixed outside the branch pipe 3, and the heat received by the heat dissipation fins 404 will also be transferred to the branch pipe 3, which also helps the cooling water in the branch pipe 3 to absorb the heat on the branch pipe 3 and take away the heat for water-cooled cooling.

[0034] The length of the lamp 4 is less than the length of the branch pipe 3, and the inner diameter of the branch pipe 3 is less than the inner diameter of the main pipe 2.

[0035] The LED lamp tube 405 is located at a position on the branch pipe 3 away from the rear cover plate 403, and the LED lamp tube 405 is closer to the front side of the lamp shade 402 than the branch pipe 3.

[0036] This design does not affect the irradiation of the LED lamp tube 405 and can also take away a large amount of heat generated during the operation of the LED lamp tube 405.

[0037] A water pump 6 is arranged below the lower cross beam 102, and a water outlet pipe 601 is fixed to the water outlet end of the water pump 6. The upper end of the water outlet pipe 601 is fixed to the bottom of a main pipe 2, and the bottom of the other main pipe 2 is a through water outlet. The upper ends of the two main pipes 2 are both closed ends.

[0038] The water pump 6 is placed in the sea water, the sea water is pumped, input into the main pipe 2 through the water outlet pipe 601, and then enters multiple branch pipes 3. The sea water flowing in the branch pipes 3 takes away the heat generated during the operation of the lamp 4, and then flows out through the other main pipe 2 and falls back into the sea.

[0039] Two symmetric ear plates 1021 are fixed to the bottom of the lower cross beam 102, and a roller 5 is rotatably connected between the two ear plates 1021. A towing rope 501 is wound around the roller 5. One end of the towing rope 501 is fixed to the fishing boat, and the other end of the towing rope 501 is fixed to the water pump 6 below it.

[0040] Through the towing rope 501, the lifting and lowering of the water pump 6 are controlled. The water pump 6 is pulled up to the fishing boat or put into the sea water. The towing rope 501 is transferred by the roller 5 so that the water pump 6 is located below the roller 5 and does not contact the fishing boat, while the side plate 1 and the like are installed at the fishing place outside the fishing boat.

[0041] The specific working principle of the present utility model is as follows: First, the side plate 1 and the like are installed at the fishing place outside the fishing boat. Subsequently, the two side plates 1 are fixedly connected through the upper cross beam 101 and the lower cross beam 102 to form a square frame structure. Each side plate 1 is externally fixed with a main pipe 2 through a mounting ear 103. In the lamp 4, the LED lamp tube 405 is mainly used to generate light source to attract fish schools, and the light is irradiated in cooperation with the lamp shade 402. Subsequently, by pulling and relaxing the towing rope 501 and transferring the towing rope 501 through the roller 5, the lifting and lowering of the water pump 6 are controlled. The water pump 6 is put into the sea water, and then the control end of the towing rope 501 is fixed to the fishing boat. At this time, the water pump 6 pumps the sea water, inputs it into the main pipe 2 through the water outlet pipe 601, and then enters multiple branch pipes 3. The sea water flowing in the branch pipes 3 takes away the heat generated during the operation of the lamp 4, and then flows out through the other main pipe 2 and falls back into the sea; realizing the water cooling and heat dissipation effect.

[0042] Secondly, part of the heat generated by the LED lamp tube 405 is also guided and dissipated by the heat sink 404. The heat received by the heat sink 404 will also be transferred to the branch pipe 3, which also helps the cooling water in the branch pipe 3 to absorb the heat on the branch pipe 3 and take away the heat for water-cooling. The water pump 6 can also be connected to the fresh water tank on the fishing boat to heat the water temperature with the heat generated by the lamp 4, so that hot water at a certain temperature can be used on the boat to realize the utilization of heat.

[0043] The above are only the preferred embodiments of the present invention, which do not limit the present invention. Any modification to the technical solutions recorded in the foregoing embodiments, any equivalent replacement of some technical features, and any modification, equivalent replacement, and improvement made thereto all fall within the protection scope of the present invention.

Claims

1. An LED water-cooled fish-attracting lamp, comprising two side panels (1), two main pipes (2), branch pipes (3), a lamp (4), a roller (5) and a water pump (6), characterized in that: An upper crossbeam (101) is fixed to the tops of the two side panels (1), a lower crossbeam (102) is fixed to the bottoms of the two side panels (1), mounting ears (103) are fixed to the opposite sides of the two side panels (1), a vertically distributed main pipe (2) is fixed through the mounting ears (103) on the same side panel (1), horizontal branch pipes (3) are evenly distributed between the two side panels (1), two ends of each branch pipe (3) respectively penetrate the two side panels (1) and are connected to the corresponding main pipe (2), and a group of lamps (4) are arranged outside each branch pipe (3); The lamp (4) comprises two lamp holders (401) fixed outside the branch pipe (3); a lampshade (402) is fixed between the two lamp holders (401); an LED lamp tube (405) is fixed between the two lamp holders (401) in the inner cavity of the lampshade (402); and a rear cover plate (403) is fixed to the rear sides of the two lamp holders (401); and a portion of the branch pipe (3) between the two lamp holders (401) is located in the inner cavity of the lampshade (402).

2. The LED water-cooled fish-attracting lamp according to claim 1, characterized in that: The rear cover plate (403) is penetrated and fixed with equidistantly distributed heat sinks (404); a portion of the heat sink (404) extends into the inner cavity of the lampshade (402) and is sleeved and fixed outside the branch pipe (3); another portion of the heat sink (404) penetrates the rear cover plate (403) and extends to the outside.

3. The LED water-cooled fish-attracting lamp according to claim 1, characterized in that: The length of the lamp (4) is smaller than the length of the branch pipe (3), and the inner diameter of the branch pipe (3) is smaller than the inner diameter of the main pipe (2).

4. The LED water-cooled fish-attracting lamp according to claim 1, characterized in that: The LED light tube (405) is located at a position of the branch tube (3) away from the rear cover plate (403); the LED light tube (405) is closer to the front side of the lampshade (402) than the branch tube (3).

5. The LED water-cooled fish-attracting lamp according to claim 1, characterized in that: A water pump (6) is arranged below the lower cross beam (102), and a water outlet pipe (601) is fixed to the water outlet end of the water pump (6), the upper end of the water outlet pipe (601) is fixed to the bottom of one main pipe (2), the bottom of the other main pipe (2) is a through water outlet, and the upper ends of the two main pipes (2) are both closed ends.

6. The LED water-cooled fish-attracting lamp according to claim 5, characterized in that: Two symmetrical ear plates (1021) are fixed to the bottom of the lower cross beam (102), and a roller (5) is rotatably connected between the two ear plates (1021). A traction rope (501) is wound around the roller (5), one end of the traction rope (501) is fixed to the fishing boat, and the other end of the traction rope (501) is fixed to the water pump (6) below it.