一种系留无人机地面端散热装置

By adopting a combination structure of spiral finned tubes and fans at the ground end of the tethered drone, combined with the design of water storage tanks and venturi tubes, efficient heat dissipation is achieved, solving the problem of stable operation of the equipment under high temperature conditions and ensuring long-term use of the ground end of the tethered drone.

CN224521443UActive Publication Date: 2026-07-17华启天成(深圳)智能科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
华启天成(深圳)智能科技有限公司
Filing Date
2025-08-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing ground-based cooling devices for tethered drones cannot guarantee stable operation for extended periods under high-temperature conditions, and traditional cooling fans are inefficient.

Method used

The heat dissipation structure adopts a combination of spiral finned tubes and fans, combined with water storage tanks and venturi tubes. It utilizes the fans to circulate air and absorb heat through the evaporation of atomized water to achieve efficient heat dissipation.

Benefits of technology

It effectively reduces the temperature of ground-based equipment under high-temperature conditions, ensuring the stable operation of tethered drones and adapting to the needs of long-term operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及系留无人机技术领域,具体涉及一种系留无人机地面端散热装置,在地面端中设置有隔板,隔板将地面端箱体内部分隔成供电部分与散热部分,地面端原有的元部件均位于供电部分中。散热部分中设置有螺旋翅片管,螺旋翅片管的内部与供电部分内部相连并通过第二风机实现供电部分中空气流通,在散热部分中设置有第一风机,第一风机鼓通空气并均匀的吹过螺旋翅片管,在第一风机的通风管上设置有文丘里管,文丘里管的喉部与蓄水槽的底部相连通。本实用新型能够实现对系留无人机地面端的散热,并在高温条件下能够通过向蓄水槽中添加水实现更高效的散热,对保证吸流无人机地面端的稳定使用起到积极的作用。
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Claims

1. A ground-end heat dissipation device for a tethered unmanned aerial vehicle (UAV), configured based on the ground end of the UAV, the ground end including a housing, the housing including an ACDC power supply, a microcontroller, and a twisted wire reel, characterized in that: The enclosure is equipped with a partition that divides the enclosure into a power supply section and a heat dissipation section. The AC-CDC power supply, microcontroller, and twisted wire coil are located in the power supply section enclosure. A spiral finned tube is installed on the partition of the heat dissipation section enclosure. Both ends of the spiral finned tube are connected to the power supply section enclosure, and one end of the spiral finned tube is connected to a second fan in the power supply section enclosure. Ventilation holes are provided on the front and rear sides of the heat dissipation section enclosure. A first fan is installed in the heat dissipation section enclosure, and the air from the first fan flows through the ventilation pipe and then through the spiral finned tube.

2. The ground end heat dissipating device for the tethered unmanned aerial vehicle according to claim 1, characterized in that: The heat dissipation unit housing is provided with an opening and closing cover plate. One side of the opening and closing cover plate is hinged to the cover plate above the power supply unit, and the other side of the opening and closing cover plate is openable and closable connected to the heat dissipation unit housing.

3. The tethered unmanned aerial vehicle ground end heat dissipating device according to claim 2, characterized in that: The heat dissipation section has a locking part on the top of the housing, and a locking bolt is threadedly connected to the opening and closing cover. The locking part has a threaded hole, and the locking bolt engages with the threaded hole.

4. The tethered unmanned aerial vehicle ground end heat dissipating device according to claim 1, characterized in that: The ventilation duct is connected to the air distribution chamber, which is located at one end of the spiral finned tube. An air distribution hole that matches the spiral finned tube is provided on one side of the air distribution chamber.

5. The tethered unmanned aerial vehicle ground end heat dissipating device according to claim 1, characterized in that: The heat dissipation unit is equipped with a water storage tank, the bottom of which is connected to a ventilation pipe. A flow control valve is installed on the connecting pipe between the water storage tank and the ventilation pipe.

6. The tethered unmanned aerial vehicle ground end heat dissipating device according to claim 5, characterized in that: The ventilation duct is equipped with a venturi tube, and the connecting pipe between the water storage tank and the ventilation duct is connected to the throat of the venturi tube.

7. The tethered unmanned aerial vehicle ground end heat dissipating device according to claim 1, characterized in that: The power supply unit is equipped with a heat dissipation control button, which is connected to a microcontroller. The microcontroller is connected to the first fan and the second fan respectively.