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首页> 外文期刊>Journal of Computational Physics >Mixed element FEM level set method for numerical simulation of immiscible fluids
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Mixed element FEM level set method for numerical simulation of immiscible fluids

机译:不混溶流体数值模拟的混合元有限元水平集方法

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A new realization of a finite element level set method for simulation of immiscible fluid flows is introduced and validated on numerical benchmarks. The new method involves a mixed discretization of the dependent variables, discretizing the flow variables with non-conforming Rannacher-Turek finite elements while using a simple first order conforming discretization of the level set field. A three step segregated solution approach is employed, first a discrete projection method is used to decouple and compute the velocity and pressure separately, after which the level set field can be computed independently.The developed method is tested and validated on a static bubble test case and on a numerical rising bubble test case for which a very accurate benchmark solution has been established. The new approach is also compared against two commercial simulation codes, Ansys Fluent and Comsol Multiphysics, which shows that the developed method is a magnitude or more accurate and at the same time significantly faster than state of the art commercial codes.
机译:介绍了一种用于模拟不混溶流体流动的有限元水平集方法的新实现,并在数值基准上进行了验证。新方法涉及对因变量进行混合离散化,使用不符合标准的Rannacher-Turek有限元离散化流动变量,同时使用简单的一阶符合水平集字段进行离散化。采用三步分离求解方法,首先使用离散投影方法对速度和压力进行解耦和计算,然后可以独立计算水平集场。在静态气泡测试案例中对开发的方法进行了测试和验证在数值上升气泡测试用例上,已经建立了非常精确的基准解决方案。还将新方法与两个商业仿真代码Ansys Fluent和Comsol Multiphysics进行了比较,这表明所开发的方法在数量级或更精确的同时,比最新的商业代码要快得多。

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