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Development of an explicit multigrid algorithm for quasi-three-dimensional viscous flows in turbo-machinery

机译:涡轮机械准三维粘性流显式多重网格算法的开发

摘要

A rapid quasi three-dimensional analysis was developed for blade-to-blade flows in turbomachinery. The analysis solves the unsteady Euler or thin layer Navier-Stokes equations in a body-fitted coordinate system. It accounts for the effects of rotation, radius change, and stream-surface thickness. The Baldwin-Lomax eddy-viscosity model is used for turbulent flows. The equations which are solved by a two-stage Runge-Kutta scheme made efficient by use of vectorization, a variable time-step, and a flux-based multigrid scheme, are described. A stability analysis is presented for the two-stage scheme. Results for a flat-plate model problem show the applicability of the method to axial, radial, and rotating geometries. Results for a centrifugal impeller and a radial diffuser show that the quasi three-dimensional viscous analysis can be a practical design tool.
机译:针对涡轮机械中的叶片到叶片流动开发了快速的准三维分析。该分析解决了人体坐标系中的不稳定Euler或薄层Navier-Stokes方程。它考虑了旋转,半径变化和流表面厚度的影响。 Baldwin-Lomax涡粘性模型用于湍流。描述了通过使用矢量化,可变时间步长和基于通量的多网格方案而变得高效的两阶段Runge-Kutta方案求解的方程。针对两阶段方案提出了稳定性分析。平板模型问题的结果表明了该方法对轴向,径向和旋转几何形状的适用性。离心叶轮和径向扩散器的结果表明,准三维粘性分析可以作为实用的设计工具。

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    Chima R. V.;

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  • 年度 1985
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