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Design of an Integrated Loop Heat Pipe Air-Cooled Heat Exchanger for High Performance Electronics

机译:高性能电子集成回路热管风冷换热器的设计

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摘要

The continually increasing heat generation rates in high performance electronics, radar systems and data centers require development of efficient heat exchangers that can transfer large heat loads. In this paper, we present the design of a new high-performance heat exchanger capable of transferring 1000 W while consuming less than 33 W of input electrical power and having an overall thermal resistance of 0.05 K/W. The low thermal resistance is achieved by using a loop heat pipe with a single evaporator and multiple condenser plates that constitute the array of fins. Impellers between the fins are driven by a custom permanent magnet synchronous motor in a compact volume of 0.1$,times,$ 0.1$,times,$0.1 m to maximize the heat transfer area and reduce the required airflow rate and electrical power. The design of the heat exchanger is developed using analytical and numerical methods to determine the important parameters of each component. The results form the basis for the fabrication and experimental characterization that is currently under development.
机译:高性能电子设备,雷达系统和数据中心中不断提高的发热量要求开发能够传递大量热负荷的高效热交换器。在本文中,我们介绍了一种新型高性能热交换器的设计,该热交换器能够传输1000 W功率,而消耗的输入电功率不到33 W,总热阻为0.05 K / W。通过使用具有单个蒸发器和构成翅片阵列的多个冷凝器板的回路热管,可实现低热阻。翅片之间的叶轮由定制的永磁同步电动机驱动,紧凑的体积为0.1倍,0.1倍,0.1百万美元,以最大化传热面积并减少所需的气流速率和电力。热交换器的设计采用分析和数值方法进行开发,以确定每个组件的重要参数。结果构成了目前正在开发的制造和实验表征的基础。

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