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首页> 外文期刊>International Journal for Numerical Methods in Fluids >An extended mixture model for the simultaneous treatment of small-scale and large-scale interfaces
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An extended mixture model for the simultaneous treatment of small-scale and large-scale interfaces

机译:同时处理小规模和大规模接口的扩展混合模型

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摘要

The aim of this work is to present a new model based on the volume of fluid method and the algebraic slip mixture model in order to solve multiphase gas-fluid flows with different interface scales and the transition among them. The interface scale is characterized by a measure of the grid, which acts as a geometrical filter and is related with the accuracy in the solution; in this sense, the presented coupled model allows to reduce the grid requirements for a given accuracy. With this objective in mind, a generalization of the algebraic slip mixture model is proposed to solve problems involving small-scale and large-scale interfaces in an unified framework taking special care in preserving the conservativeness of the fluxes. This model is implemented using the OpenFOAM libraries to generate a tool capable of solving large problems on high-performance computing facilities. Several examples are solved as a validation for the presented model, including new quantitative measurements to assess the advantages of the method.
机译:这项工作的目的是提出一种基于流体体积法和代数滑移混合物模型的新模型,以解决具有不同界面尺度及其之间过渡的多相气液流动。界面比例尺的特征在于对网格的度量,该度量充当几何过滤器,并且与解决方案的准确性有关;从这个意义上讲,提出的耦合模型可以降低给定精度下的网格要求。考虑到这一目标,提出了代数滑动混合模型的泛化,以解决统一框架中涉及小规模和大规模接口的问题,并特别注意保持通量的保守性。使用OpenFOAM库来实现该模型,以生成能够解决高性能计算设施上的大问题的工具。解决了几个示例,作为对所提出模型的验证,包括新的定量测量以评估该方法的优势。

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