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Numerical calculation of flows in turbomachinery with three dimensional viscous codes

机译:三维粘性代码在涡轮机械中流动的数值计算

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A fast and accurate three dimensional (3-D) viscous code for calculating flows in turbomachinery has been established. In this code, H meshes are adopted to build the discrete equations, and the conservation equations are solved on grid nodes at the corners of cuboid elements. In order to acceler ate convergence, local time stepping, residual smoothing and multigrid method are also applied, and the viscous effects are approximated by a very simple mixing length model. For verification of the accuracy and applicability of the method, transonic flows through compressor cascades of NASA rotor 37 and flows through a turbine stator of NASA have been calculated. The good agreement between experimental results and design data has demonstrated the reliability and applicability of the present method, which can be used for simulating the complex 3-D viscous flow phenomenon in turbomachinery.
机译:建立了用于计算涡轮机械中流量的快速,准确的三维(3-D)粘性代码。在该代码中,采用H网格构建离散方程,并在长方体元素角处的网格节点上求解守恒方程。为了加速收敛,还应用了局部时间步长,残差平滑和多重网格方法,并且通过一个非常简单的混合长度模型来近似粘性效应。为了验证该方法的准确性和适用性,已经计算了跨音速流过NASA转子37的压缩机级联和流过NASA涡轮定子的流。实验结果与设计数据吻合良好,证明了该方法的可靠性和适用性,可用于模拟涡轮机械中复杂的3-D粘性流动现象。

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