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Molecular-scale heat transfer in liquids and at liquid-solid interfaces: Toward the quality evaluation of heat flux

机译:液体和液-固界面的分子尺度传热:进行热通量质量评估

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摘要

Molecular mechanism of heat conduction in liquids and at solid-liquid interfaces, which is getting important recently especially in the field of microanofluidics and biodevices, is discussed based on the results of the authors' molecular dynamics (MD) simulations. The concept of intermolecular energy transfer (IET) is introduced as a view of molecular-scale mechanism of heat conduction in liquids focusing attention on the liquid structure that transfers thermal energy. Characteristics of various types of IET are examined. Heat conduction flux is a sum of IET and in that sense, heat conduction flux is a product assembled with various types of IET as "parts." In case of heat conduction in highly nonequilibrium thermal state, only some types of IET constitute particular contribution to macroscopic heat conduction flux. A case of a solid-liquid interface through which high heat flux exists is reported as an example. In this case, a type of IET passes through the interface with a low thermal boundary resistance and other types do with a high resistance. The overall thermal boundary resistance of a solid-liquid interface depends on the types of IET of which the heat flux consists. For example, high thermal resistance is resulted if the heat flux consists of "high-resistance type" IET On the other hand, heat flux consisting of "low-resistance type" IET can pass through the interface with a small temperature drop. A sort of "quality" of heat flux, which is determined by IET as its "parts" can thus be defined.
机译:基于作者的分子动力学(MD)模拟结果,讨论了在液体中以及在固液界面处的热传导的分子机制,这一点最近变得尤为重要,尤其是在微/纳米流体学和生物设备领域。引入分子间能量转移(IET)的概念是为了关注液体中热传导的分子尺度机理,重点是转移热能的液体结构。检查了各种类型的IET的特征。导热通量是IET的总和,从这个意义上讲,导热通量是将各种类型的IET作为“零件”组装而成的产品。在高非平衡热状态下进行热传导的情况下,只有某些类型的IET对宏观热传导通量有特殊的贡献。作为例子,报告了存在高热通量的固液界面的情况。在这种情况下,一种IET以较低的热边界电阻通过界面,而其他类型以较高的热边界电阻通过。固液界面的整体热边界电阻取决于构成热通量的IET的类型。例如,如果热通量由“高电阻型” IET组成,则产生高热阻。另一方面,由“低电阻型” IET组成的热通量可以以较小的温度降通过界面。因此,可以定义一种由IET确定的“通量”的“质量”。

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