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Viscous Drag and Heat Transfer in Non-Stationary Gas Flow between Rotating Cylinders

机译:在旋转气缸之间的非平稳气体流动中的粘性阻力和传热

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The viscous drag (wall shear stress) and heat flux on the both cylinder walls, as well as flow macroscopic characteristics (velocity, density and temperature) are numerically studied in non-stationary Couette gas flow between rotating cylinders. The results are obtained using Direct Simulation Monte Carlo (DSMC) method and numerical solution of a continual model based on the Navier-Stokes-Fourier (NSF) method. Three typical cases are considered: A) inner rotating - outer stationary cylinder; B) inner stationary - outer rotating cylinder; C) opposite rotating cylinders. These studies have been accomplished for fixed Knudsen numbers. The NSF results have been obtained by setting a local value of Knudsen number in the corresponding first order slip boundary conditions. Capabilities applications of continual model are estimated for several Knudsen numbers.
机译:在两个汽缸壁上的粘性阻力(壁剪切应力)和热通量,以及流动宏观特性(速度,密度和温度)在旋转圆筒之间的非平稳沟槽气流中进行了数控。结果是使用直接仿真蒙特卡罗(DSMC)方法和基于Navier-Stokes-Fourier(NSF)方法的持续模型的数值解。考虑了三种典型案例:a)内旋转 - 外固定缸; b)内固定 - 外旋转圆筒; c)对面的旋转圆柱体。已经为固定的knudsen数字完成了这些研究。通过在相应的第一阶滑动边界条件下设置knudsen号的局部值来获得NSF结果。估计持续模型的能力应用估计了几个knudsen数字。

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