• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (4): 116-121.

• 论文 • 上一篇    下一篇

微型轴流风扇气动相似特性研究

王企鲲;陈康民   

  1. 上海理工大学动力工程学院
  • 发布日期:2010-02-20

Investigation on Aerodynamic Similitude for Axial Microfan

WANG Qikun;CHEN Kangmin   

  1. College of Power Engineering, University of Shanghai for Science and Technology
  • Published:2010-02-20

摘要: 微型轴流风扇是计算机等电子设备的重要散热部件,当前随着计算机尺寸变小而运算速度的提高,其发热量也随之增加,这对微型轴流风扇的气动设计提出更高的要求。相似设计作为一种重要而有效的设计方法,已广泛运用于大中型风扇的气动设计中,但其在微型轴流风扇的应用尚未广泛开展,其主要原因是微型轴流风扇内部的流动位于Re数非自模区,用于大中型风扇相似设计中的行之有效的设计方法在微型轴流风扇的设计中达不到应有的效果。基于此,利用气体动力学相似原理,推导微型轴流风扇气动相似所须满足的条件,并与流动位于Re数自模区的大中型轴流风扇的气动相似规律相对比,提出使微型风扇实现气动相似的“弦长雷诺数”准则,并数值验证该准则对微型轴流风扇气动相似的有效性,同时分析该准则的适用条件与局限性。研究结果表明,“弦长雷诺数”准则能较好地实现微型轴流风扇的气动相似,但其要求模型叶轮与原型叶轮转速之比与其几何缩小的比例尺的平方成正比。这就要求模型叶轮的缩小比例不能过大,否则不仅易导致其所须转速过大而实际无法实现,而且会导致由于离心力的差别过大而使其气动性能的相似性出现偏差。

关键词: 气动性能, 微型轴流风扇, 相似准则

Abstract: Axial microfan is widely used as cooling equipment for electronic devices such as PCs. Currently, the PC size becomes smaller and smaller while their operating speed becomes faster and faster, which calls for better cooling performance of axial microfan. As an important and effective design approach, the similitude design has been widely used in the design of large and medium fans, but not yet in the design of axial microfan. One main reason is that the flow inside the microfan is located in non self-similitude area for Reynolds number, which results in the poor performance of the microfan designed by those similitude criterions that are surely effective for the design of large and medium fans, where the flow is located in self-similitude area for Reynolds number. By using the similitude principle for aerodynamics, the aerodynamic similitude conditions for axial microfan are proposed. Compared to large and medium fans in self-similitude area, a new criterion called ‘chord Reynolds number’ is proposed and is numerically validated with the discussions on its applicability and limitation. Results indicate that ‘chord Reynolds number’ can well realize the aerodynamic similitude for the axial microfan but it requires that the revolution speed of the impeller should be in direct proportion to the square of the reduced scale, so the reduced scale of model impeller shall not be too large, otherwise new non similitude factors may occur again due to too high revolution speed.

Key words: Aerodynamic performance, Axial microfan, Similitude criterion

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