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Effects of Electronic Enclosure and Inlet Area on P - Q Curves of Installed Axial Cooling Fans

机译:电子外壳和进气口面积对已安装轴流风扇的 P-Q 曲线的影响

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This paper describes the effects of the enclosure and its inlet on the performance of axial air-cooling fans installed in electronic equipment. The performance of an air-cooling fan is defined by its P - Q (pressure difference — flow rate) curve. Recent studies have reported that the P - Q curve of cooling fans depends on their operating environment. P - Q curves are normally used to define the performance of fans in the computational fluid dynamics (CFD) codes. Therefore the change of the P - Q curve may cause inaccurate CFD analyses to be performed in the thermal design of electronic equipment, including cooling fans. In this study, we measured the performance of test fans in an enclosure and explored the effects of the inlet size and shape while varying the speed of revolution of the fan. In particular, the static pressure difference between the front and rear of fans installed in a test enclosure was investigated. Our experiments clarified the effect of the enclosure on fan performance. The level of decrease of the maximum flow rate was found to be determined by the size of the inlet area, and was independent of the shape of the inlet and the revolution speed of the fan.
机译:本文介绍了机箱及其入口对安装在电子设备中的轴流式空气冷却风扇性能的影响。空气冷却风扇的性能由其 P-Q(压差-流量)曲线定义。最近的研究报告说,冷却风扇的 P-Q曲线取决于其运行环境。 P-Q曲线通常用于在计算流体力学(CFD)代码中定义风扇的性能。因此, P-Q曲线的变化可能会导致在包括冷却风扇在内的电子设备的热设计中执行不正确的CFD分析。在这项研究中,我们测量了机箱中测试风扇的性能,并探讨了进气口尺寸和形状的影响,同时改变了风扇的旋转速度。特别是,研究了安装在测试机柜中的风扇前后之间的静压差。我们的实验阐明了机箱对风扇性能的影响。发现最大流量的降低程度取决于入口面积的大小,并且与入口的形状和风扇的转速无关。

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