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首页> 外文期刊>International Journal of Refrigeration >Heat transfer and pressure drop in microchannels with isotropically etched pillars at sub-ambient temperatures
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Heat transfer and pressure drop in microchannels with isotropically etched pillars at sub-ambient temperatures

机译:微通道中的传热和压降,具有各向同性蚀刻柱在亚环境温度下的柱

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摘要

Glass microfluidic devices are often manufactured using micromachining techniques that involve the use of wet etching. In applications where high-pressure fluids are used, the microchannels in the microchip are filled with pillar structures for mechanical strength. Owing to the isotropic nature of the wet etching process, the pillars resulting from this process are shaped as truncated cones. In this paper, we present the results of a numerical study for predicting the flow and the heat transfer characteristics in a microchannel with truncated cone-shaped pillar arrays at sub-ambient temperatures. In order to verify the developed correlations, we use Joule-Thomson microcoolers that contain a counter-flow heat exchanger (CFHX) as test platforms and operate these with nitrogen gas. The performance of the microcoolers predicted with the new correlations matches well with the experimental data. Using these correlations, the CFHX is optimized and the CFHX losses are reduced by more than 30%. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:玻璃微流体装置通常使用涉及使用湿法蚀刻的微加工技术来制造。在使用高压流体的应用中,微芯片中的微通道填充有用于机械强度的柱结构。由于湿法蚀刻工艺的各向同性性质,该过程产生的柱形成形为截短的锥体。在本文中,我们介绍了在子环境温度下预测微通道中的微通道中的流动和传热特性的数值研究的结果。为了验证发达的相关性,我们使用joule-thomson微电影,该微电影伴包含逆流热交换器(CFHX)作为测试平台,并用氮气操作这些。使用新相关性预测的微冷槽的性能与实验数据相匹配。使用这些相关性,优化CFHX,CFHX损耗减少超过30%。 (c)2018年Elsevier Ltd和IIR。版权所有。

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