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Assessment of an Unstructured-Grid Method for Predicting 3-D Turbulent Viscous Flows

机译:评估3-D湍流粘性流的非结构网格方法的评估

摘要

A method Is presented for solving turbulent flow problems on three-dimensional unstructured grids. Spatial discretization Is accomplished by a cell-centered finite-volume formulation using an accurate lin- ear reconstruction scheme and upwind flux differencing. Time is advanced by an implicit backward- Euler time-stepping scheme. Flow turbulence effects are modeled by the Spalart-Allmaras one-equation model, which is coupled with a wall function to reduce the number of cells in the sublayer region of the boundary layer. A systematic assessment of the method is presented to devise guidelines for more strategic application of the technology to complex problems. The assessment includes the accuracy In predictions of skin-friction coefficient, law-of-the-wall behavior, and surface pressure for a flat-plate turbulent boundary layer, and for the ONERA M6 wing under a high Reynolds number, transonic, separated flow condition.
机译:提出了一种解决三维非结构化网格湍流问题的方法。空间离散化是通过使用精确的线性重建方案和迎风通量差异通过以单元为中心的有限体积公式来实现的。时间通过隐式后向Euler时间步进方案提前。流动湍流效应由Spalart-Allmaras一方程模型建模,该模型与墙函数耦合以减少边界层子层区域中的单元数。提出了对该方法的系统评估,以设计指导方针,以便将该技术更战略地应用于复杂问题。评估包括在平板湍流边界层和高雷诺数,跨音速,分离流下的ONERA M6机翼预测皮肤摩擦系数,壁规律和表面压力的准确性健康)状况。

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  • 作者

    Frink Neal T.;

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  • 年度 1996
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