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EFFECTS OF VORTEX-VORTEX INTERACTION IN A COMPRESSOR CASCADE WITH VORTEX GENERATORS

机译:Vortex-Vortex相互作用在压缩机级联用涡流发电机的影响

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This paper presents a numerical investigation to explore the effects of vortex generators on a high speed compressor cascade. Secondary flow effects like the corner separation vortex have an influence on the performance of a compressor cascade such as leading to increased losses. In order to control the corner separation vortex and reduce losses, an extensive study of vortex generators applied to a compressor cascade is conducted. A preliminary study by steady 3D RANS simulations is performed using the Spalart-Allmaras turbulence model. The aerodynamic performance as well as the behavior of the corner separation vortex is investigated in the compressor cascade without vortex generators. Then, a vortex generator is added to the cascade, which is numerically simulated. Various configurations are considered, which are decided by the height and installation angle of the vortex generator. Comparison of the performance attained by these configurations results in an optimum scheme that has minimum losses. Furthermore, unsteady 3D DES simulations are performed with the optimum configuration. This method that predicts the flow field more precisely could help verify the accuracy of the RANS results. Finally, by analyzing all the resulting aerodynamic performance and numerical flow phenomena, the mechanism of vortex-vortex interaction is presented and discussed, which could be a criterion to reduce the corner separation flow and enhance the performance of axial compressors.
机译:本文介绍了数值调查,以探讨涡流发生器对高速压缩机级联的影响。像转角分离涡流的二次流量效果对压缩机级联的性能的影响,例如导致损耗增加。为了控制角分离涡流并减少损耗,对施加到压缩机级联的涡流发生器进行了广泛的研究。使用Spalart-Allmaras湍流模型进行稳定3D RAN模拟的初步研究。在没有涡流发电机的压缩机级联中研究了空气动力学性能以及转角分离涡流的行为。然后,将涡流发生器添加到级联,在数值上模拟。考虑各种配置,其由涡流发生器的高度和安装角度决定。这些配置实现的性能的比较导致具有最小损耗的最佳方案。此外,使用最佳配置执行不稳定的3D DES模拟。这种方法更准确地预测流场可以帮助验证RAN结果的准确性。最后,通过分析所有产生的空气动力学性能和数值流动现象,提出和讨论了涡旋涡流相互作用的机制,这可能是减少拐角分离流动并增强轴向压缩机性能的标准。

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