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A CFD STUDY OF CIRCUMFERENTIAL GROOVE CASING TREATMENTS IN A TRANSONIC AXIAL COMPRESSOR

机译:跨轴压气机行沟型套管处理的CFD研究

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Numerical investigations were conducted to predict the performance of a transonic axial compressor rotor with circumferential groove casing treatment. The Notre Dame Transonic Axial Compressor (ND-TAC) was simulated by Tsinghua University with an in-house CFD code (NSAWET) for this work. Experimental data from the ND-TAC were used to define the geometry, boundary conditions and data sampling method for the numerical simulation. These efforts, combined with several unique simulation approaches, such as non-matched grid boundary technology to treat the periodic boundaries and interfaces between groove grids and the passage grid, resulted in good agreement between the numerical and experimental results for overall compressor performance and radial profiles of exit total pressure.Efforts were made to study blade level flow mechanisms to determine how the casing treatment impacts the compressor's stall margin and performance. The flow structures in the passage, the tip gap and the grooves as well as their mutual interactions were plotted and analyzed. The flow and momentum transport across the tip gap in the smooth wall and the casing treatment configurations were quantitatively compared.
机译:进行了数值研究,以预测采用周向槽套管处理的跨音速轴向压缩机转子的性能。清华大学使用内部CFD代码(NSAWET)对Notre Dame跨音速轴向压缩机(ND-TAC)进行了仿真。来自ND-TAC的实验数据被用来定义数值模拟的几何形状,边界条件和数据采样方法。这些努力与多种独特的仿真方法(例如不匹配的网格边界技术,用于处理沟槽网格和通道网格之间的周期性边界和界面)相结合,使压缩机的整体性能和径向轮廓的数值和实验结果之间取得了很好的一致性。出口总压力。 努力研究叶片水平流动机制,以确定机壳处理方式如何影响压缩机的失速裕度和性能。绘制并分析了通道,尖端间隙和凹槽中的流动结构以及它们之间的相互作用。定量比较了光滑壁和套管处理结构中穿过尖端间隙的流量和动量传输。

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