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Experimentally-Benchmarked kinetic simulations of heat transfer through rarefied gas with constant heat flux at the boundary

机译:通过在边界处具有恒定热通量的稀土气体的经验基准的动力学模拟

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摘要

In many applications, the heat flux at the surface is known instead of the surface temperature. In addition, in some applications, like vacuum drying or high altitude flights, the pressure is below atmospheric pressure, so the rarefaction effects become important, and therefore, the Navier-Stokes-Fourier equations fail to predict gas thermal behavior. In this paper, a constant heat flux boundary condition is developed and implemented in the frame of the Shakhov model kinetic equation, with the possibility to simulate the diffuse-specular reflexion of the molecules from the surface. The developed technique is implemented for the simulation of gas heat transfer in a two concentric cylinders configuration, similar to vacuum drying of used nuclear fuel canisters. The numerical results obtained using developed approach are compared with experimental data of heat transfer through rarefied gas between two concentric cylinders.
机译:在许多应用中,表面的热通量是已知的代替表面温度。 此外,在一些应用中,如真空干燥或高海拔飞行,压力低于大气压,因此稀疏效应变得重要,因此,Navier-Stokes-Fourier方程未能预测气体热行为。 在本文中,在Shakhov模型动力学方程的框架中开发和实施了恒定的热通量边界条件,其可能性可以模拟来自表面的分子的漫射镜面反射。 开发技术用于模拟两种同心圆柱形配置中的气体传热,类似于使用核燃锅罐的真空干燥。 将使用显影方法获得的数值结果与通过两个同心圆柱之间的稀土气体的传热实验数据进行比较。

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