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System Evaluation of Cavitation-Enhanced Heat Transfer in Microchannels

机译:微通道空化增强热传递的系统评价

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Mainstream Engineering Corporation and Rensselaer Polytechnic Institute previously introduced a new method of enhancing two-phase heat transfer in microchannels. Micro-orifices, 20μm wide, were entrenched at the inlet of 227-μm (hydraulic diameter) microchannels to provide flow stability and induce hydrodynamic cavitation. Significant heat transfer enhancement was recorded during supercavitating flow conditions in comparison to non-cavitating flows with minimal pressure-drop penalty. This paper examines the usefulness of this approach from a systems perspective. Results are compared to predicted values in microchannel passages without orifices. Recommendations are made to improve the performance of the entire thermal management system.
机译:主流工程公司和Rensselaer理工学院先前介绍了一种提高微通道两相热传递的新方法。微孔,20μm宽,在227-μm(液压直径)微通道的入口处根深蒂固,以提供流动稳定性并诱导流体动力空化。与具有最小压力下降损失的非空化流量相比,在超级流动条件期间记录了显着的传热增强。本文从系统角度检查了这种方法的有用性。将结果与MicroChannel段落中的预测值进行比较,而无需孔口。建议采取建议,提高整个热管理系统的性能。

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