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Numerical study of a thin liquid film flowing down an inclined wavy plane

机译:液体薄膜在倾斜的波浪平面上流动的数值研究

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摘要

We investigate the stability of a thin liquid film flowing down an inclined wavy plane using a direct numerical solver based on a finite element/arbitrary Lagrangian Eulerian approximation of the free-surface NavierStokes equations. We study the dependence of the critical Reynolds number for the onset of surface wave instabilities on the inclination angle, the waviness parameter, and the wavelength parameter, focusing in particular on mild inclinations and relatively large waviness so that the bottom does not fall monotonously. In the present parameter range, shorter wavelengths and higher amplitude for the bottom undulation stabilize the flow. The dependence of the critical Reynolds number evaluated with the Nusselt flow rate on the inclination angle is more complex than the classical relation (56 times the cotangent of the inclination angle), but this dependence can be recovered if the actual flow rate at critical conditions is used instead.
机译:我们使用基于自由表面NavierStokes方程的有限元/任意拉格朗日欧拉近似的直接数值求解器,研究了在倾斜的波浪状平面上向下流动的薄膜的稳定性。我们研究了表面波不稳定性起因的临界雷诺数对倾角,波度参数和波长参数的依赖性,尤其关注轻度倾斜和相对较大的波度,以使底部不会单调下降。在当前参数范围内,底部波动的较短波长和较高振幅会稳定流动。用Nusselt流量评估的临界雷诺数对倾角的依赖性比经典关系(56倍于倾角的余切角)更复杂,但是如果临界条件下的实际流量为代替。

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