首页> 外文期刊>The Journal of Chemical Physics >Molecular dynamics study of thermal phenomena in an ultrathin liquid film sheared between solid surfaces: The influence of the crystal plane on energy and momentum transfer at solid-liquid interfaces - art. no. 214717
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Molecular dynamics study of thermal phenomena in an ultrathin liquid film sheared between solid surfaces: The influence of the crystal plane on energy and momentum transfer at solid-liquid interfaces - art. no. 214717

机译:固体表面之间剪切的超薄液膜中热现象的分子动力学研究:晶面对固液界面能量和动量传递的影响-艺术。没有。 214717

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摘要

A molecular dynamics study has been performed on a liquid film sheared between moving solid walls. Thermal phenomena that occur in the Couette-like flow were examined, including energy conversion from macroscopic flow energy to thermal energy, i.e., viscous heating in the macroscopic sense, and heat conduction from the liquid film to the solid wall via liquid-solid interfaces. Four types of crystal planes of fcc lattice were assumed for the surface of the solid wall. The jumps in velocity and temperature at the interface resulting from deteriorated transfer characteristics of thermal energy and momentum at the interface were observed. It was found that the transfer characteristics of thermal energy and momentum at the interfaces are greatly influenced by the types of crystal plane of the solid wall surface which contacts the liquid film. The mechanism by which such a molecular scale structure influences the energy transfer at the interface was examined by analyzing the molecular motion and its contribution to energy transfer at the solid-liquid interface. (c) 2005 American Institute of Physics.
机译:已经对在移动的固体壁之间剪切的液膜进行了分子动力学研究。研究了在库埃特样流动中发生的热现象,包括从宏观流动能到热能的能量转换,即宏观意义上的粘性加热,以及从液膜到液壁通过液-固界面的热传导。 fcc晶格的四种晶面被假定为固体壁的表面。观察到界面处的速度和温度的跃迁是由于界面处的热能和动量的传递特性恶化所致。已经发现,界面处的热能和动量的传递特性受接触液体膜的固体壁表面的晶面类型的影响很大。通过分析分子运动及其对固液界面能量传递的贡献,研究了这种分子尺度结构影响界面能量传递的机理。 (c)2005年美国物理研究所。

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