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首页> 外文期刊>Journal of Heat Transfer >Discussion: 'Effects of Various Parameters on Nanofluid Thermal Conductivity' (Jang, S. P., and Choi, S. D. S., 2007, ASME J. Heat Transfer, 129, pp. 617-623)
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Discussion: 'Effects of Various Parameters on Nanofluid Thermal Conductivity' (Jang, S. P., and Choi, S. D. S., 2007, ASME J. Heat Transfer, 129, pp. 617-623)

机译:讨论:“各种参数对纳米流体导热系数的影响”(Jang,S.P。和Choi,S.D.S.,2007,ASME J.Heat Transfer,129,第617-623页)。

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摘要

In a series of articles, Jang and Choi [1-3] listed and explained their effective thermal conductivity (k_(eff)) model for nanofluids. For example, in the 2004 article [1], they constructed a k_(eff) correlation for dilute liquid suspensions interestingly, based on kinetic gas theory as well as nanosize boundary-layer theory, the Kapitza resistance, and nanoparticle-induced convection. Three mechanisms contributing to k_(eff) were summed up, i.e., base-fluid and nanoparticle conductions as well as convection due to random motion of the liquid molecules.
机译:在一系列文章中,Jang和Choi [1-3]列出并解释了其对纳米流体的有效热导率(k_(eff))模型。例如,在2004年的文章[1]中,他们基于动力气体理论,纳米尺寸边界层理论,Kapitza阻力和纳米粒子诱发的对流,有趣地构造了稀液体悬浮液的k_(eff)相关性。归纳了影响k_(eff)的三种机制,即基础流体和纳米粒子的传导以及由于液体分子的随机运动而引起的对流。

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