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Assessment of Relevant Physical Phenomena Controlling Thermal Performance of Nanofluids

机译:控制纳米流体热性能的相关物理现象的评估

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This paper provides an overview of the important physical phenomena necessary for the determination of effective thermal conductivity of nanofluids. Through an investigation, a large degree of randomness and scatter has been observed in the experimental data published in the open literature. Given the inconsistency in these data, it is impossible to develop a comprehensive physical-based model that can predict all the trends. This also points out the need for a systematic approach in both experimental and theoretical studies. Upper and lower bounds are developed for steady-state conduction in stationary nanofluids. Comparisons between these bounds and the experimental data indicate that all the data (except for carbon nanotube data) lie between the lower and upper bounds.
机译:本文概述了确定纳米流体有效导热率所必需的重要物理现象。通过调查,在公开文献中发表的实验数据中观察到了很大程度的随机性和分散性。考虑到这些数据的不一致,不可能开发出可以预测所有趋势的基于物理的综合模型。这也指出在实验和理论研究中都需要一种系统的方法。上限和下限是为固定纳米流体中的稳态传导而开发的。这些界限与实验数据之间的比较表明,所有数据(碳纳米管数据除外)都位于上下界限之间。

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