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Simulation of thermal transpiration flow using a high-order moment method

机译:使用高阶矩法模拟热蒸腾流

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Nonequilibrium thermal transpiration flow is numerically analyzed by an extended thermodynamic approach, a high-order moment method. The captured velocity profiles of temperaturedriven flow in a parallel microchannel and in a micro-chamber are compared with available kinetic data or direct simulation Monte Carlo (DSMC) results. The advantages of the highorder moment method are shown as a combination of more accuracy than the Navier-Stokes- Fourier (NSF) equations and less computation cost than the DSMC method. In addition, the high-order moment method is also employed to simulate the thermal transpiration flow in complex geometries in two types of Knudsen pumps. One is based on micro-mechanized channels, where the effect of different wall temperature distributions on thermal transpiration flow is studied. The other relies on porous structures, where the variation of flow rate with a changing porosity or pore surface area ratio is investigated. These simulations can help to optimize the design of a real Knudsen pump.
机译:通过扩展的热力学方法,一种高阶矩方法,对非平衡热蒸发流进行了数值分析。将在平行微通道和微腔中捕获的温度驱动流的速度分布与可用动力学数据或直接模拟蒙特卡洛(DSMC)结果进行比较。高阶矩方法的优势表现为比Navier-Stokes-Fourier(NSF)方程式更高的精度和比DSMC方法更少的计算成本。此外,还采用高阶矩方法来模拟两种类型的Knudsen泵中复杂几何形状中的热蒸发流。一种是基于微机械化通道,其中研究了不同壁温分布对热蒸腾流量的影响。其他依赖于多孔结构,其中研究了流速随孔隙率或孔隙表面积比的变化而变化。这些模拟可以帮助优化实际Knudsen泵的设计。

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