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Experimental and semi-analytical investigation of heat transfer in nucleate pool boiling by considering surface structuring methods

机译:考虑表面结构方法,通过考虑核心池沸腾热传递的实验和半分析研究

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摘要

Pool boiling is the process in which the heating surface is submerged in a large body of stagnant liquid. In the present work, heat transfer in nucleate pool boiling is modeled both experimentally and semi-analytically with the consideration of surface structuring methods including wire electrical discharge machining (WEDM) and etching. The developed models consider variations of nucleation site density (NSD), contact angle and Prandtl number taking into account both pure and impure fluids. According to the results, by increasing wall superheat and contact angle, heat flux enhances. Also, rising Prandtl number results in heat flux enhancement. Comparing Sample 2 (structured by etching method), Sample 3 (structured by WEDM method), and Sample 4 (the surface with best performance) with Sample 1 (plain surface) indicates that the HTC is approximately 37%, 121%, and 177% higher than the plain surface, respectively. Comparison of the obtained results based on the semi-analytical model with existing experimental data and previous analytical models shows a good agreement.
机译:池沸腾是加热表面浸没在大体上停滞液体中的过程。在目前的工作中,考虑到包括导线电放电加工(WEDM)和蚀刻的表面结构方法,在实验和半分析中模拟核心池中的热传递。开发模型考虑成核位点(NSD),接触角和普朗特数的变化,考虑到纯净和不纯的液体。根据结果​​,通过增加壁过热和接触角,热通量增强。此外,上升普朗特数量导致热通量增强。将样品2(通过蚀刻方法构造),样品3(由WEDM方法的结构),以及样品1(平原表面)的样品4(具有最佳性能的表面)表明HTC约为37%,121%和177分别高于平原表面。基于现有实验数据的半分析模型的所得结果的比较和先前的分析模型显示了良好的一致性。

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