Effect of Aspect Ratio and Installation Direction on Channel Flow Heat Transfer Performance under a Wide Range of Reynolds Number

Shunichi Sakuragi, D. Torii
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Abstract

In recent years, in the cooling technology for high-power electronic devices such as power transistors used for drive motor control of electric vehicles and hybrid vehicles, a method of flowing a cooling fluid to a cooling substrate having a fin structure has become the main technology. The structure of the cooling fluid flow path is a channel flow through multiple narrow plate gaps to secure a heat transfer area. In this study, the heat transfer characteristics when the aspect ratio of the channel having a flat rectangular cross-section was changed were investigated in detail by experiments. Moreover, the difference in the heat transfer characteristic at the time of making a rectangular flow path into vertical installation and horizontal installation was also investigated.
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宽展弦比和安装方向对大雷诺数范围流道换热性能的影响
近年来,在用于电动汽车和混合动力汽车驱动电机控制的功率晶体管等大功率电子器件的冷却技术中,冷却流体向具有翅片结构的冷却基板流动的方法已成为主要技术。冷却流体流动路径的结构是通过多个窄板间隙的通道流动,以确保传热区域。本文通过实验研究了平面矩形截面通道宽高比变化时的换热特性。此外,还研究了矩形流道在垂直安装和水平安装时的换热特性差异。
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