纳米流体的热导率数据、机制和模型综述

Ji-Hwan Lee, Seunghyun Lee, C. Choi, S. Jang, Stephen U. S. Choi
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引用次数: 225

摘要

大量研究表明,纳米流体具有极好的物理性质,其中热导率的研究最为广泛,但仍存在争议。在这篇综述文章中,我们首先介绍了实验研究中的重要里程碑,这些实验研究显示了纳米流体导热性的新特征,以及那些没有显示出这种特殊特征的实验研究。在简要回顾了用来解释纳米流体导热性的物理机制之后,我们对用于预测纳米流体导热性行为的经典模型和新模型进行了批判性的回顾。我们讨论了一些有争议的问题,如数据不一致,经典机制和新机制的充分性和适用性,以及实验数据与模型预测之间的差异。最后,对纳米流体的未来研究方向进行了展望,并对研究人员在开发具有优良性能的纳米流体方面所面临的争议性问题进行了探讨。
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A Review of Thermal Conductivity Data, Mechanisms and Models for Nanofluids
Numerous studies have shown that nanofluids have superb physical properties, among which thermal conductivity has been studied most extensively but remains controversial. In this review article, we first present important milestones in experimental studies that show new features of the thermal conductivity of nanofluids, together with those that show no such special features. After a brief review of the physical mechanisms proposed to explain the thermal conductivity of nanofluids we present a critical review of the classical and new models used to predict the thermal conductivity behavior of nanofluids. We discuss some controversial issues such as data inconsistencies, the sufficiency and suitability of classical and new mechanisms, and the discrepancies between experimental data and model predictions. At the end of our review, we give some directions for future research in nanofluids and to aid researchers in resolving the controversial issues we are still facing in developing nanofluids with superior t...
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