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The Influence of Solid Wall-fluid Molecular Interaction on Transport Properties of Gases in a Mini/micro Channel

机译:固体壁流体分子相互作用对迷你/微通道中气体运输性能的影响

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The physical model and analytical method are put forward for considering the molecular interaction between solid wall and gas fluid when dealing with convective heat transfer in macro/mini/micro channels based on the boundary layer theory concept, the molecular kinetic theory of gases, structural chemistry and continuum hypothesis. The influence rule of wall-fluid intermolecular forces to the transport properties of gases located in boundary layer region is studied applying proposed models. The gas density variation distribution equation including the wall-fluid molecular interaction is derived with continuum media integral approach. The theoretical results show that the fluid diffusion is independent of the wall-fluid interaction but visosity and heat conductivity not. According to the gas molecular density distribution function and molecular dynamics, new formulae were developed for calculating viscidity coefficient and thermal conductivity with wall-fluid interacting effect for a fluid. The research results provide scientific reference for further study and exploitation on fluid flow and heat transfer of mini/micro channels. In addition, the formulae offered in this paper to compute the transport properties of gases are also suitable for fine analysis of boundary layer in macro-scale channels.
机译:提出了物理模型和分析方法,用于考虑基于边界层理论概念的宏/迷你/微通道的对流传热时​​,固体壁和气体之间的分子相互作用,气体分子动力学理论,结构化学和连续的假设。研究了所提出的模型研究了位于边界层区域中的气体的运输性能的壁流体分子力的影响规律。包括壁流体分子相互作用的气体密度变异分布方程与连续介质积分方法导出。理论结果表明,流体扩散与壁流体相互作用无关,但粘度和导热率无关。根据气体分子密度分布函数和分子动力学,开发了新的公式,用于计算粘度系数和导热率与液体流体的液体流体相互作用。研究结果为进一步研究和开发进行了对迷你/微通道的流体流动和传热的科学参考。此外,本文提供的公式来计算气体的运输性能也适用于宏观级信道中的边界层的精细分析。

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