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首页> 外文期刊>International Journal for Numerical Methods in Fluids >An unstructured finite element model for incompressible two-phase flow based on a monolithic conservative level set method
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An unstructured finite element model for incompressible two-phase flow based on a monolithic conservative level set method

机译:基于单片保守水平集法的不可压缩两相流量的非结构化有限元模型

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摘要

We present a robust numerical method for solving incompressible, immiscible two-phase flows. The method extends both a monolithic phase conservative level set method with embedded redistancing and a semi-implicit high-order projection scheme for variable-density flows. The level set method can be initialized conveniently via a simple phase indicator field instead of a signed distance function (SDF). To process the indicator field into a SDF, we propose a new partial differential equation-based redistancing method. We also improve the monolithic level set scheme to provide more accuracy and robustness in full two-phase flow simulations. Specifically, we perform an extra step to ensure convergence to the signed distance level set function and simplify other aspects of the original scheme. Lastly, we introduce consistent artificial viscosity to stabilize the momentum equations in the context of the projection scheme. This stabilization is algebraic, has no tunable parameters and is suitable for unstructured meshes and arbitrary refinement levels. The overall methodology includes few numerical tuning parameters; however, for the wide range of problems that we solve, we identify only one parameter that strongly affects performance of the computational model and provide a value that provides accurate results across all the benchmarks presented. This methodology results in a robust, accurate, and efficient two-phase flow model, which is mass- and volume-conserving on unstructured meshes and has low user input requirements, making it attractive for real-world applications.
机译:我们提出了一种稳健的数值方法,用于求解不可压缩的不混溶的两相流量。该方法扩展了具有嵌入式重新定义的单片相位保守级别集方法和用于可变密度流的半隐式高阶投影方案。可以通过简单的阶段指示器字段而不是符号距离功能(SDF)方便地初始化电平集方法。要将指示字段处理到SDF中,我们提出了一种新的基于部分微分方程的重新存储方法。我们还提高了整体级别设定方案,为全两相流模拟提供了更多的准确性和鲁棒性。具体地,我们执行额外的步骤以确保符合符号距离级别集功能的汇聚,并简化原始方案的其他方面。最后,我们在投影方案的背景下引入一致的人工粘度以稳定动量方程。这种稳定性是代数,没有可调谐参数,适用于非结构化网格和任意细化水平。整体方法包括数值少数数值调整参数;然而,对于我们解决的各种问题,我们只识别一个强烈影响计算模型的性能的一个参数,并提供了一个在呈现的所有基准中提供准确结果的值。该方法产生了坚固,准确,有效的两相流模型,其在非结构化网格上是质量和音量,并且具有低用户输入要求,使其对现实世界的应用具有吸引力。

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