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Comparison of numerical schemes for computational simulation of liquid wavy film flow on vertical wall

机译:垂直壁上液体波浪膜流动的数值模拟计算方案比较

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Film flows are classified into no-wavy laminar, wavy laminar and turbulence along the Reynolds number or the flow stability. Since the wavy motions of the film flows are so intricate and nonlinear, the studies have largely been dependent upon the experimental way. The numerical approaches have been limited on the no-wavy flow regime. In this study, the film's full wavy motion is numerically investigated. The present numerical approach is based on the VOF interface capturing methods. The implicit and explicit schemes for the interface time marching are compared with each other. The HRIC (High Resolution Interface Capturing) and the geometry reconstruction method are tested as the treatment of convective terms at the liquid-air interface. The dependency of the grid density and the time step size are investigated in the aspect of the probability density function of the film thickness. All results are compared with Takamasa's experimental results.
机译:沿雷诺数或流动稳定性,膜流分为无波浪层流,波浪层流和湍流。由于胶片流的波动非常复杂且非线性,因此研究很大程度上取决于实验方法。数值方法仅限于无波浪流态。在这项研究中,对电影的完整波浪运动进行了数值研究。当前的数值方法是基于VOF接口捕获方法的。将接口时间行进的隐式和显式方案相互比较。测试了HRIC(高分辨率界面捕获)和几何重构方法,作为在液-气界面处对流项的处理。在薄膜厚度的概率密度函数方面研究了网格密度与时间步长的关系。将所有结果与Takamasa的实验结果进行比较。

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