首页> 外文会议>The 4th ASME/JSME Joint Fluids Engineering Conference Vol.2 Pt.B; Jul 6-10, 2003; Honolulu, Hawaii >AN IMPROVED THREE-DIMENSIONAL LEVEL SET METHOD FOR GAS-LIQUID TWO-PHASE FLOWS
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AN IMPROVED THREE-DIMENSIONAL LEVEL SET METHOD FOR GAS-LIQUID TWO-PHASE FLOWS

机译:气液两相流三维三维集改进方法

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For the present study, redeveloped a three-dimensional numerical method based on the level set method that is applicable to two-phase systems with high-density ratio. The present solver for the Navier-Stokes equations was based on the projection method with a non-staggered grid. We improved the treatment of the convection terms and the interpolation method that was used to obtain the intermediate volume flux defined on the cell faces. We also improved the solver for the pressure Poisson equations and the reinitialization procedure of the level set function. It was shown that the present solver worked very well even for a density ratio of the two fluids of 1:1000. We simulated the coalescence of two rising bubbles under gravity, and a gas bubble bursting at a free surface to evaluate mass conservation for the present method. It was also shown that the volume conservation (i. e., mass conservation) of bubbles was very good even after bubble coalescence.
机译:对于本研究,基于水平集方法重新开发了适用于高密度比的两相系统的三维数值方法。 Navier-Stokes方程的当前求解器基于具有非交错网格的投影方法。我们改进了对流项的处理和用于获得单元面上定义的中间体积通量的插值方法。我们还改进了压力泊松方程的求解器和水平设置函数的重新初始化过程。结果表明,即使两种流体的密度比为1:1000,本求解器也能很好地工作。我们模拟了在重力作用下两个上升气泡的合并以及在自由表面破裂的气泡,以评估本方法的质量守恒。还表明,即使在气泡合并之后,气泡的体积守恒(即质量守恒)也非常好。

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