Molecular-to-Large-Scale Heat Transfer With Multiphase Interfaces: Current Status and New Directions

Molecular-to-Large-Scale Heat Transfer With Multiphase Interfaces: Current Status and New Directions
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多相界面的分子到大规模传热:现状和新方向

DOI:
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发表时间:
2009
期刊:
影响因子:
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通讯作者:
M. Jog
M. Jog
中科院分区:
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文献类型:
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作者:
R. M. Manglik;M. Jog

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对多相界面及其边界上和沿着的对流质量、动量和热传输的科学理解,为沸腾传热、两相流、热管、喷雾冷却和液滴-薄膜涂层等许多工程应用的发展提供了根本基础。许多研究试图通过参数实验研究和/或模拟来表征界面行为并直接或隐含地对其机械影响进行建模。推进我们的理解以及发展广义的,也许是“普遍的”,更准确的现象学或机械相关性的目标,用于预测质量,动量和传热,继续从事全球研究界。在热传递杂志的这个特刊中,介绍了一些代表该领域基本和应用问题的当前研究的集合。
The scientific understanding of multiphase interfaces and the associated convective mass, momentum, and heat transport across and along their boundaries, provide the fundamental underpinnings of the advancement of boiling heat transfer, two-phase flows, heat pipes, spray cooling, and droplet-film coating, among many other engineering applications. Numerous studies have tried to characterize the interfacial behavior and model their mechanistic influences either directly or implicitly via parametric experimental investigations and/or simulations. The goal of advancing our understanding as well as developing generalized, perhaps "universal, "and more accurate phenomenological or mechanistic correlations, for predicting mass, momentum, and heat transfer, continues to engage the worldwide research community. A collection of some such current investigations that are representative of both basic and applied issues in the field is presented in this special issue of the Journal of Heat Transfer.