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Numerical modeling of turbulence-induced interfacial instability in two-phase flow with moving interface

机译:流动界面下两相流动中湍流引起的界面失稳的数值模拟

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The present paper introduces a new interfacial marker-level set method (IMLS) which is coupled with the Reynolds averaged Navier-Stokes (RANS) equations to predict the turbulence-induced interfacial instability of two-phase flow with moving interface. The governing RANS equations for time-dependent, axisymmetric and incompressible two-phase flow are described in both phases and solved separately using the control volume approach on structured cell-centered collocated grids. The transition from one phase to another is performed through a consistent balance of kinematic and dynamic conditions on the interface separating the two phases. The topological changes of the interface are predicted by applying the level set approach. By fitting a number of interfacial markers on the intersection points of the computational grids with the interface, the interfacial stresses and consequently, the interfacial driving forces are easily estimated. Moreover, the normal interface velocity, calculated at the interfacial markers positions, can be extended to the higher dimensional level set function and used for the interface advection process. The performance of linear and non-linear two-equation k-i: turbulence models is investigated in the context of the considered two-phase flow impinging problem, where a turbulent gas jet impinging on a free liquid surface. The numerical results obtained are evaluated through the comparison with the available experimental and analytical data. The nonlinear turbulence model showed superiority in predicting the interface deformation resulting from turbulent normal stresses. However, both linear and nonlinear turbulence models showed a similar behavior in predicting the interface deformation due to turbulent tangential stresses. In general, the developed IMLS numerical method showed a remarkable capability in predicting the dynamics of the considered two-phase immiscible flow problems and therefore it can be applied to quite a number of interface stability problems.
机译:本文介绍了一种新的界面标记水平集方法(IMLS),该方法与雷诺平均Navier-Stokes(RANS)方程相结合,以预测湍流引起的两相流动界面的界面不稳定性。在两个阶段中都描述了与时间相关,轴对称和不可压缩的两相流的主导RANS方程,并使用控制体积方法对结构化的以单元为中心的并置网格进行了独立求解。从一相到另一相的过渡是通过在分离两相的界面上始终保持运动学和动态条件的平衡来进行的。通过应用水平集方法可以预测界面的拓扑变化。通过在计算网格与接口的交点上拟合多个界面标记,可以轻松地估算界面应力,从而轻松估算界面驱动力。而且,可以将在界面标记位置计算出的正常界面速度扩展到更高维的水平设定函数,并用于界面平流过程。在考虑的两相流撞击问题的背景下研究了线性和非线性两方程式k-i:湍流模型的性能,其中湍流气体射流撞击在自由液体表面上。通过与可用的实验和分析数据进行比较来评估获得的数值结果。非线性湍流模型在预测由湍流法向应力引起的界面变形方面表现出优势。但是,线性和非线性湍流模型在预测由于湍流切向应力引起的界面变形方面都表现出相似的行为。通常,已开发的IMLS数值方法在预测所考虑的两相不混溶流动的动力学方面表现出了显着的能力,因此可以应用于许多界面稳定性问题。

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