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Thermally induced gas flows in ratchet channels with diffuse and specular boundaries

机译:热诱导气体在具有扩散和镜面边界的棘轮通道中流动

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摘要

A net gas flow can be induced in the gap between periodically structured surfaces held at fixed but different temperatures when the reflection symmetry along the channel axis is broken. Such a situation arises when one surface features a ratchet structure and can be augmented by altering the boundary conditions on different parts of this surface, with some regions reflecting specularly and others diffusely. In order to investigate the physical mechanisms inducing the flow in this configuration at various Knudsen numbers and geometric configurations, direct simulation Monte Carlo (DSMC) simulations are employed using transient adaptive subcells for collision partner selection. At large Knudsen numbers the results compare favorably with analytical expressions, while for small Knudsen numbers a qualitative explanation for the flow in the strong temperature inhomogeneity at the tips of the ratchet is provided. A detailed investigation of the performance for various ratchet geometries suggests optimum working conditions for a Knudsen pump based on this mechanism.
机译:当沿通道轴的反射对称性破裂时,可以在保持固定但温度不同的周期性结构化表面之间的间隙中引起净气流。当一个表面具有棘轮结构并且可以通过更改该表面不同部分的边界条件来增强这种情况时,某些区域会发生镜面反射,而其他区域会漫反射。为了研究在各种Knudsen数和几何构型下以这种构型诱导流动的物理机制,直接仿真Monte Carlo(DSMC)仿真使用瞬态自适应子单元进行碰撞伙伴选择。对于较大的克努森数,结果与分析表达式相比具有优势,而对于较小的克努森数,则提供了棘轮尖端强温度不均匀性中流动的定性解释。对各种棘轮几何形状的性能进行的详细研究表明,基于这种机理的Knudsen泵的最佳工作条件。

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