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首页> 外文期刊>Journal of Micromechanics and Microengineering >The application of temperature-sensitive paints for surface and fluid temperature measurements in both thermal developing and fully developed regions of a microchannel
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The application of temperature-sensitive paints for surface and fluid temperature measurements in both thermal developing and fully developed regions of a microchannel

机译:温度敏感涂料在微通道的热显影和完全显影区域中的表面和流体温度测量中的应用

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摘要

This work presents the experimental analysis of heat transfer in a straight polydimethylsiloxane microchannel with cross-sectional width/depth ratio of 8.47 using the temperature-sensitive paint (TSP) technique. The TSP technique is capable of acquiring temperature profiles for both the surface and the fluid with a detailed resolution of 144 μm per pixel through the microchannel under the constant wall temperature condition. The acquired temperature data have been analyzed to study the heat transfer and Nusselt numbers in both thermal developing and fully developed regions. The estimation of thermal entrance length from the experimental results shows good agreement with the empirical equation of the parallel-plate system, while the Nusselt numbers in the fully developed region deviate. This deviation is attributed to the small scale of the channel, which amplifies the effects of the electric double layer and the surface boundary condition. These results demonstrate the great potential of the TSP technique in providing detailed and valuable information for heat transfer investigation inside microdevices.
机译:这项工作介绍了使用感温涂料(TSP)技术在截面宽度/深度比为8.47的直聚二甲基硅氧烷微通道中进行传热的实验分析。 TSP技术能够在恒定壁温条件下通过微通道以每像素144μm的详细分辨率获取表面和流体的温度曲线。已对获取的温度数据进行了分析,以研究热开发区和充分开发区的传热和Nusselt数。根据实验结果估算出的热入口长度与平行板系统的经验方程式吻合得很好,而完全展开区域中的努塞尔特数则有所偏离。该偏差归因于通道的小尺寸,这放大了双电层和表面边界条件的影响。这些结果证明了TSP技术在为微设备内部的传热研究提供详细而有价值的信息方面的巨大潜力。

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