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Numerical Simulation of Multi-Scale Two-Phase Flows Using a Hybrid Interface-Resolving Two-Fluid Model (HIRES-TFM)

机译:混合界面解析两流体模型(HIRES-TFM)对多尺度两相流的数值模拟

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References(38) Cited-By(2) This contribution outlines the coherent and mathematical rigorous derivation of a generalized multi-scale model framework that is based on the Eulerian–Eulerian two-fluid methodology. By conditional volume-averaging (based on the immersed interface concept) and subsequent closure modeling, the two-phase flow features are first divided into an unresolved portion (on average or sub-grid scale) and a resolved portion, and then interpreted on a physical basis leading to constitutive relations for closure. The resulting two-fluid model framework HIRES-TFM (Hybrid Interface-Resolving Two-Fluid Model) exhibits the same basic structure as found for single-phase flow, which results in an inherently stable method and enables us to reuse numerical techniques that have been developed for single-phase problems. Moreover, the conceptual approach is both compatible to the Large Eddy Simulation (LES) framework for turbulence modeling, and is expandable to multi-scale flow scenarios, i.e. dispersed and segregated two-phase flows.
机译:参考文献(38)Cited-By(2)此文稿概述了基于欧拉-欧拉二流体方法的广义多尺度模型框架的连贯和数学严格推导。通过有条件的体积平均(基于沉浸式界面概念)和随后的封闭建模,两相流特征首先分为未解析部分(平均或子网格规模)和解析部分,然后在导致本构关系终止的物理基础。生成的双流体模型框架HIRES-TFM(混合接口解析双流体模型)显示出与单相流相同的基本结构,从而产生了固有的稳定方法,并使我们能够重用已专为单相问题而开发。此外,该概念方法既与用于湍流建模的大涡模拟(LES)框架兼容,又可扩展到多尺度流动场景,即分散和分离的两相流。

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