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Numerical analysis of the influence of thermal stresses on the nonlinear thermomolecular pressure difference effect

机译:热应力对非线性热分子压差效应影响的数值分析

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On the basis of a numerical analysis of the non-Navier-Stokes gas-dynamic equations for slow non-isothermal gas flows, the nonlinear thermomolecular pressure difference effect due to a large temperature gradient along the lateral surface of a capillary is investigated. It is shown that the magnitude of the effect is substantially different from the values calculated using the Navier-Stokes equations. For two models of molecular interaction (Maxwell molecules and hard spheres), the possibility of a quasi-one-dimensional interpretation of the effect for experimental estimation purposes is demonstrated. The solutions of the relaxation kinetic equation for flow in a plane capillary at small Knudsen numbers and the gas-dynamic equations for slow non-isothermal flows are compared and the range of their applicability is estimated.
机译:在对非等温气体缓慢流动的非Navier-Stokes气体动力学方程进行数值分析的基础上,研究了由于沿毛细管侧面的温度梯度大而引起的非线性热分子压差效应。结果表明,效应的大小与使用Navier-Stokes方程计算的值大不相同。对于两种分子相互作用模型(麦克斯韦分子和硬球),证明了为实验估计目的对效应进行准一维解释的可能性。比较了小Knudsen数下平面毛细管中流动的弛豫动力学方程的解法和慢等温流动的气体动力学方程,并估计了其适用范围。

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