首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >SCALING OF FLOW CHARACTERISTICS AND POWER CONSUMPTION WITH PROFILE HEIGHT FOR MINIATURE CENTRIFUGAL FANS
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SCALING OF FLOW CHARACTERISTICS AND POWER CONSUMPTION WITH PROFILE HEIGHT FOR MINIATURE CENTRIFUGAL FANS

机译:小型离心风机的流量特征和功耗特征缩放

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This paper addresses issues that relate to downscaling the height of centrifugal fans for application in low profile technologies, such as the cooling of portable power electronics. The parameters studied throughout the paper include flow rate, pressure rise and power consumption characteristics. The former two of these are measured using a fan characterization rig and the latter by directly measuring the power supplied to the fan. These are studied for fans ranging in diameter from 15 to 30mm and with profile heights ranging from 0.3mm to 15mm. It is found that all of the phenomena encountered are best described in terms of fan aspect ratio. Overall, the results show that the conventional scaling laws cannot be accurately applied when the blade profile alone is being scaled. Indeed the only parameter that was observed to be accurately predicted by the scaling laws was the pressure rise attainable but was only accurate for fan aspect ratios greater than 0.17. Below this, the measured pressure rise characteristics fell logarithmically toward zero. The results also showed that there is no advantage to using fans with aspect ratio greater than 0.3. This was because the maximum flow rate was achieved at this aspect ratio and decreased slightly as it was further increased. Overall, the scaling phenomena described throughout this paper are invaluable to designer of efficient low profile cooling solutions that are to incorporate such fans.
机译:本文解决了与降低离心风机的高度以用于薄型技术(例如便携式电力电子设备的冷却)有关的问题。整篇论文中研究的参数包括流量,压力上升和功耗特性。其中的前两个是使用风扇特性测试仪测量的,而后者是通过直接测量提供给风扇的功率来测量的。这些风扇针对直径从15到30mm且轮廓高度从0.3mm到15mm的风扇进行了研究。发现所有遇到的现象都可以用风扇纵横比来最好地描述。总体而言,结果表明,仅对叶片轮廓进行缩放时,常规缩放定律无法正确应用。实际上,观察到的可通过缩放定律准确预测的唯一参数是可达到的压力上升,但仅对于大于0.17的风扇长宽比才是精确的。低于此值,测得的压力上升特性对数趋向于零。结果还表明,使用宽高比大于0.3的风扇没有任何优势。这是因为在此纵横比下实现了最大流速,并且随着流速的进一步增加而略有下降。总体而言,本文通篇所描述的结垢现象对于采用此类风扇的高效薄型散热解决方案的设计者来说是无价的。

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