首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Computational study of compound angle film cooling flow field and aerodynamic losses using a parallel hybrid mesh Navier-Stokes code
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Computational study of compound angle film cooling flow field and aerodynamic losses using a parallel hybrid mesh Navier-Stokes code

机译:使用平行混合网格Navier-Stokes编码的复合角膜冷却流场和空气动力损失的计算研究

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摘要

Flow characteristics and aerodynamic losses of film cooling injection with compound angles of 30 degrees, 60 degrees, and 90 degrees for velocity ratios of 0.5, 1.0, and 2.0 are numerically investigated using the high-quality hybrid meshes comprising tetrahedrons, prisms, and pyramids. The solutions are obtained by solving the compressible Reynolds-averaged Navier-Stokes equations, and the cell-vertex finite volume method is used to discretize these equations. The predicted results are firstly validated against the experimental data. It has been found that the variation tendency of mass average net total pressure loss coefficient with compound angles is reasonably predicted and in many cases well predicted. The analyses based on net total pressure losses show that the aerodynamic losses tend to increase with the increasing of compound angle regardless of the velocity ratio, and the tendency becomes more obvious when the velocity ratio is large. On the other hand, some typical cases are additionally calculated with different turbulence models and flux computation schemes for the comparisons. A latest proposed numerical flux computation method, simple low-dissipative AUSM (SLAU) scheme, is adopted in the predictions. The results indicate that SLAU scheme is slightly superior to Harten-Lax-van Leer-Einfeldt-Wada scheme in the prediction of compound angle film cooling injection.
机译:使用包括四面体,棱柱和棱锥的高质量混合网格,数值研究了复合角分别为30度,60度和90度,速度比为0.5、1.0和2.0的薄膜冷却注射的流动特性和空气动力学损失。通过求解可压缩的雷诺平均Navier-Stokes方程获得解,并使用单元顶点有限体积法离散这些方程。首先根据实验数据验证了预测结果。已经发现,质量平均净总压力损失系数随复合角的变化趋势是可以合理预测的,并且在许多情况下可以很好地预测。基于净总压力损失的分析表明,与风速比无关,空气动力损失会随着复合角的增加而增加,而当风速比较大时,这种趋势会变得更加明显。另一方面,还使用不同的湍流模型和通量计算方案另外计算了一些典型情况,以进行比较。在预测中采用了最新提出的数值通量计算方法,即简单的低耗散AUSM(SLAU)方案。结果表明,SLAU方案在复合角膜冷却注入的预测中略优于Harten-Lax-van Leer-Einfeldt-Wada方案。

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