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Unsteady-flow-field predictions for oscillating cascades

机译:振荡叶栅的非定常流场预测

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摘要

The unsteady flow field around an oscillating cascade of flat plates with zero stagger was studied by using a time marching Euler code. This case had an exact solution based on linear theory and served as a model problem for studying pressure wave propagation in the numerical solution. The importance of using proper unsteady boundary conditions, grid resolution, and time step size was shown for a moderate reduced frequency. Results show that an approximate nonreflecting boundary condition based on linear theory does a good job of minimizing reflections from the inflow and outflow boundaries and allows the placement of the boundaries to be closer to the airfoils than when reflective boundaries are used. Stretching the boundary to dampen the unsteady waves is another way to minimize reflections. Grid clustering near the plates captures the unsteady flow field better than when uniform grids are used as long as the 'Courant Friedrichs Levy' (CFL) number is less than 1 for a sufficient portion of the grid. Finally, a solution based on an optimization of grid, CFL number, and boundary conditions shows good agreement with linear theory.
机译:通过使用时间行进的欧拉(Euler)代码研究了零交错的平板振荡级联周围的非稳态流场。该案例具有基于线性理论的精确解,并作为研究数值解中压力波传播的模型问题。对于适当降低频率,显示了使用适当的不稳定边界条件,网格分辨率和时间步长的重要性。结果表明,基于线性理论的近似非反射边界条件在最小化流入和流出边界的反射方面做得很好,并且与使用反射边界时相比,边界的放置更靠近机翼。拉伸边界以减弱非稳定波是使反射最小化的另一种方法。在板的足够部分,只要“ Courant Friedrichs Levy”(CFL)值小于1,在板附近的网格聚集比使用均匀网格时更好地捕获了不稳定的流场。最后,基于网格,CFL数和边界条件的优化的解决方案与线性理论显示出良好的一致性。

著录项

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    Huff, Dennis L.;

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  • 年度 1991
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