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Maxwell boundary condition and velocity dependent accommodation coefficient

机译:麦克斯韦边界条件和速度相关的适应系数

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摘要

A modification of Maxwell's boundary condition for the Boltzmann equation is developed that allows to incorporate velocity dependent accommodation coefficients into the microscopic description. As a first example, it is suggested to consider the wall-particle interaction as a thermally activated process with three parameters. A simplified averaging procedure leads to jump and slip boundary conditions for hydrodynamics. Coefficients for velocity slip, temperature jump, and thermal transpiration flow are identified and compared with those resulting from the original Maxwell model and the Cercignani-Lampis model. An extension of the model leads to temperature dependent slip and jump coefficients.
机译:对玻尔兹曼方程的麦克斯韦边界条件进行了修改,可以将速度相关的调节系数纳入微观描述中。作为第一个示例,建议将壁-粒子相互作用视为具有三个参数的热激活过程。简化的平均程序会导致流体动力学的跳跃和滑移边界条件。确定速度滑移,温度跳跃和热蒸腾流量的系数,并将其与原始Maxwell模型和Cercignani-Lampis模型得出的系数进行比较。该模型的扩展导致温度相关的滑移和跳跃系数。

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