热管理集成装置及集成灶

By utilizing the integrated heat management device of the integrated stove, the waste heat of the refrigerant circulation is used for heat exchange, which solves the problem of heat dissipation of the air conditioning module and achieves higher energy utilization and lower energy consumption.

CN224516934UActive Publication Date: 2026-07-17ETHERMAL AUTOMOTIVE TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ETHERMAL AUTOMOTIVE TECH CO LTD
Filing Date
2025-07-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The heat generated by the air conditioning module of the integrated stove during operation is directly dissipated, affecting the cooling effect and increasing energy consumption, thus increasing the user's operating costs.

Method used

An integrated thermal management device is adopted, which utilizes the waste heat of the refrigerant cycle to exchange heat through refrigerant-side components, water tanks and heat exchangers, thereby improving energy efficiency.

Benefits of technology

It improves energy efficiency, reduces energy consumption and user costs, and enhances the integration and structural compactness of the integrated stove.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请实施例涉及家用电器技术领域,尤其公开了一种热管理集成装置及集成灶,热管理集成装置包括支架、冷媒侧组件、水箱和第一换热器,冷媒侧组件、水箱和第一换热器设于支架,冷媒侧组件包括压缩机、节流阀、蒸发器和冷媒管,压缩机、节流阀和蒸发器通过冷媒管依次连通,以供冷媒流动,水箱用于与外部水源连通,第一换热器设有第一冷媒侧通道和第一水侧通道,第一冷媒侧通道的入口和出口分别与压缩机与节流阀连通,第一水侧通道的入口与出口均与水箱连通,第一冷媒侧通道内的冷媒用于和第一水侧通道内的水进行换热。冷媒侧组件、水箱和第一换热器集成于支架,提高装置的集成度,且第一换热器利用了冷媒侧组件的废热,提高了能源利用率。
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Claims

1. A thermal management integrated device, comprising: include: support; A refrigerant-side assembly is mounted on the bracket. The refrigerant-side assembly includes a compressor, a throttle valve, an evaporator, and a refrigerant pipe. The compressor, the throttle valve, and the evaporator are connected in sequence through the refrigerant pipe to allow refrigerant flow. A water tank, installed on the bracket, is used to connect to an external water source; A first heat exchanger is mounted on the support frame. The first heat exchanger has a first refrigerant-side channel and a first water-side channel. The inlet of the first refrigerant-side channel is connected to the compressor, and the outlet of the first refrigerant-side channel is connected to the throttle valve. The inlet and outlet of the first water-side channel are both connected to the water tank. The refrigerant in the first refrigerant-side channel is used to exchange heat with the water in the first water-side channel.

2. The integrated thermal management device according to claim 1, characterized in that, The integrated thermal management device further includes a second heat exchanger, which is mounted on the bracket. The second heat exchanger is provided with a second refrigerant-side channel and a second water-side channel. The inlet of the second refrigerant-side channel is connected to the compressor, and the outlet of the second refrigerant-side channel is connected to the inlet of the first refrigerant-side channel. The inlet of the second water-side channel is used to connect with the external water source, and the outlet of the second water-side channel is used for drainage; The refrigerant in the second refrigerant-side channel is used for heat exchange with the water in the second water-side channel.

3. The thermal management integrated device of claim 2, wherein , Along the height direction of the bracket, the evaporator and the compressor are respectively located at both ends of the bracket, and the thermal management integrated device includes a circulating water pump. Both the water tank and the circulating water pump are located at the end of the bracket where the compressor is located. The circulating water pump is connected to the water tank and the first heat exchanger respectively, and the circulating water pump is used to drive water to circulate between the water tank and the first water-side channel. Alternatively, the circulating water pump is connected to the water tank and the second heat exchanger respectively, and the circulating water pump is used to drive water to circulate between the water tank and the second water-side channel.

4. The thermal management integrated device of claim 1, wherein , The integrated thermal management device also includes a third heat exchanger, which is mounted on the bracket. The third heat exchanger is provided with a third refrigerant side channel and a third water side channel. The inlet of the third refrigerant side channel is connected to the first outlet of the throttling valve, and the outlet of the third refrigerant side channel is connected to the compressor. The inlet of the third water-side channel is used to connect with an external water source, and the outlet of the third water-side channel is used for drainage. The refrigerant in the third refrigerant-side channel is used for heat exchange with the water in the third water-side channel.

5. The integrated thermal management device according to any one of claims 1-4, characterized in that, The refrigerant-side assembly also includes a liquid receiver, which is connected between the evaporator and the compressor via the refrigerant pipe; Along the height direction of the bracket, the evaporator and the compressor are located at opposite ends of the bracket. Along a first direction, the liquid receiver and the compressor are located on one side of the evaporator. The first direction is perpendicular to the height direction of the bracket.

6. The integrated thermal management device according to claim 5, characterized in that, The refrigerant-side assembly also includes a regenerator, which is connected via the refrigerant pipe to the outlet of the first refrigerant-side channel of the first heat exchanger, the outlet of the liquid receiver, the inlet of the throttle valve, and the inlet of the compressor, respectively. The regenerator, the liquid receiver, and the compressor are all located on one side of the evaporator along the first direction, and the regenerator is located on one side of the compressor along the height direction of the support, and the liquid receiver is located on one side of the compressor along the second direction. The second direction, the first direction, and the height direction of the bracket are all perpendicular to each other.

7. The integrated thermal management device according to claim 6, characterized in that, The evaporator includes a housing, an evaporator body, and a fan. The fan is located at one end of the housing along the second direction, and the evaporator body is located at the end of the housing away from the fan along the second direction. The inlet of the evaporator body is connected to the second outlet of the throttling valve, and the outlet of the evaporator body is connected to the liquid receiver.

8. The integrated thermal management device according to claim 7, characterized in that, The thermal management integrated device also includes an electrical component, which is disposed at one end of the bracket where the evaporator is located, and is electrically connected to the compressor, the throttle valve and the evaporator.

9. The integrated thermal management device according to claim 8, characterized in that, The electrical components include a support plate, a controller, a transformer, and a frequency converter. The support plate extends along the first direction and is connected to the bracket. The frequency converter, the controller, and the transformer are sequentially arranged on the support plate along the first direction, and along the first direction, the frequency converter is closer to the compressor than the transformer.

10. An integrated hob, characterized in that Includes the thermal management integrated device as described in any one of claims 1-9.