首页> 外文会议>IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >STUDY ON THE NATURAL AIR COOLING DESIGN OF ELECTRONIC EQUIPMENT CASINGS: EFFECTS OF THE HEIGHT AND SIZE OF OUTLET VENT ON THE FLOW RESISTANCE
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STUDY ON THE NATURAL AIR COOLING DESIGN OF ELECTRONIC EQUIPMENT CASINGS: EFFECTS OF THE HEIGHT AND SIZE OF OUTLET VENT ON THE FLOW RESISTANCE

机译:电子设备外壳自然空气冷却设计研究:出口通风口高度和大小对流动阻力的影响

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This paper describes the effects of the outlet vent size and the distance between the outlet vent location and the power heater position on the flow resistance in natural-air-cooled electronic equipment casings. An experiment was carried out using a simple model casing simulated for the practical natural-air-cooled casing which is composed of 4 side walls, a top plate and bottom plate which has an inlet opening. A power heater served as a power dissipation unit was placed at its open bottom. An outlet opening was set on one of the side walls. The opening area, the height of the outlet and the heater location were varied. The experimental results were analyzed using the flow resistance coefficient K which was related to the distance between the outlet vent and the power heater position and the heat removal from the outlet vent, and K values were plotted against a pair of Reynolds numbers Re and the outlet vent porosity b which is defined as the ratio of outlet vent open area to the top surface area of the casing.
机译:本文介绍了出口通风口尺寸和出口通风口位置与电力加热器位置之间的距离对自然风冷电子设备外壳的流动阻力。使用用于实际天然风冷壳体的简单模型外壳进行实验,该套管由具有4个侧壁,顶板和底板构成的实际天然空气冷却的壳体。用作功率耗散单元的电力加热器被放置在其开口底部。出口开口设置在一个侧壁上。开口区域,出口的高度和加热器位置变化。使用与出口通风口和电力加热器位置之间的距离有关的流动性系数k和从出口通风口的热量移除的实验结果,并绘制k值与一对雷诺数Re和出口绘制排气孔隙率B被定义为出口通气开口区域与壳体顶部表面积的比率。

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