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Numerical simulation of incompressible turbulent flow using linear eddy viscosity-based turbulence models

机译:基于线性涡流粘性的湍流模型的不可压缩湍流数值模拟

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摘要

The present study focuses on the recent development of an implicit pressure-based finite volume algorithm for numerical solution of Reynolds averaged Navier-Stokes equations (RANS) in an inertial frame of reference for the prediction of unsteady incompressible flow problems. The algorithm uses boundary-conforming, multi-blockudstructured grid with moving boundaries, collocated variable arrangement with momentum equations resolved along cartesian directions, second-order accurate spatial and temporal discretisation schemes for the convective fluxes and a pressure-velocity solution strategy. Effect of turbulence was simulated using appropriate linear eddy viscosity-based turbulence models. The capabilities and limitations of the cost-effective unsteady Reynolds averaged Navier-Stokes (URANS) approach has been demonstrated for few application problems of engineering interest.
机译:本研究集中在基于隐式压力的有限体积算法的最新发展中,该算法用于在惯性参考系中预测雷诺平均Navier-Stokes方程(RANS)的数值,以预测不稳定的不可压缩流动问题。该算法使用边界一致的,具有移动边界的多块非结构化网格,并置的变量布置以及沿笛卡尔方向求解的动量方程,对流通量的二阶精确时空离散方案和压力速度求解策略。使用适当的基于线性涡流粘度的湍流模型模拟了湍流的影响。具有成本效益的非定常雷诺平均Navier-Stokes(URANS)方法的功能和局限性已针对少数工程感兴趣的应用问题进行了证明。

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