Optimum Sized Air Channels for Natural Convection Cooling

A. Malhammar
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引用次数: 5

Abstract

Natural convection cooling is widely used for temperature control in electronic equipment. The amount of heat that can be removed is determined by three factors: the temperature difference, the cooling area and the heat transfer coefficient. Heat transfer calculations for idealized cases are relatively easy and the results of these often give a good lead for the mechanical design of electronic equipment. As it is a general desire to keep the volume of an equipment at a minimum, one of the most important aims is to maximize the heat dissipation in a volume for a given temperature difference. The optimum spacing for PCB:s in cabinets cooled by natural convection will depend on the pattern of air flow through the cabinet. The air flow pattern is also very important for the possibilities to improve heat dissipation with component coolers. The optimum fin spacing for component coolers used with natural convection will vary with many factors but is generally between 5-15 mm.
自然对流冷却的最佳尺寸空气通道
自然对流冷却广泛应用于电子设备的温度控制。可以去除的热量由三个因素决定:温差、冷却面积和换热系数。理想情况下的传热计算相对容易,其结果通常为电子设备的机械设计提供良好的指导。由于人们通常希望将设备的体积保持在最小,因此最重要的目标之一是在给定温差下将体积中的散热最大化。通过自然对流冷却的机柜中PCB板的最佳间距将取决于通过机柜的气流模式。空气流动模式对于改善组件冷却器散热的可能性也非常重要。使用自然对流的组件冷却器的最佳翅片间距将因许多因素而异,但通常在5-15毫米之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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