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Simulation of Casing Treatments ofa Transonic Compressor Stage

机译:跨音速压缩机级套管处理的模拟

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This article presents the study of casing treatments on an axial compressor stage for improving stability and enhancing stall margin. So far, many simulations of casing treatments on single rotor or rotor-stator configurations were performed. But as the application of casing treatments in engines will be in a multistage compressor, in this study, the axial slots are applied to a typical transonic first stage of a high-pressure 4.5-stage compressor including an upstream IGV, rotor, and stator. The unsteady simulations are performed with a three-dimensional time accurate Favre-averaged Navier-stokes flow solver. In order to resolve all important flow mechanisms appearing through the use of casing treatments, a computational multiblock grid consisting of approximately 2.4 million nodes was used for the simulations. The configurations include axial slots in 4 different variations with an axial extension ranging into the blade passage of the IGV. Their shape is semicircular with no inclination in circumferential direction. The simulations proved the effectiveness of casing treatments with an upstream stator. However, the results also showed that the slots have to be carefully positioned relative to the stator location.
机译:本文介绍了在轴向压缩机级进行套管处理的研究,以提高稳定性并提高失速裕度。到目前为止,已经对单转子或转子-定子配置的套管处理进行了许多模拟。但是,由于在发动机中应用套管处理将在多级压缩机中进行,因此在本研究中,轴向槽被应用于高压4.5级压缩机的典型跨音速第一级,包括上游IGV,转子和定子。非稳态模拟是使用三维时间精确的Favre平均Navier-stokes流量求解器执行的。为了解决所有由于套管处理而出现的重要流动机制,模拟中使用了由大约240万个节点组成的计算多块网格。该配置包括4种不同变化形式的轴向槽,其轴向延伸范围位于IGV的叶片通道内。它们的形状是半圆形的,在圆周方向上没有倾斜。仿真结果证明了采用上游定子进行套管处理的有效性。但是,结果还表明,必须相对于定子位置小心地定位槽。

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