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Effects of Number of Circumferential Casing Grooves on Stall Flow Characteristics of a Transonic Axial Compressor

机译:圆周壳体槽数对跨声轴压缩机的倒置流动特性的影响

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This work investigates the effects of circumferential casing grooves on stall flow characteristics of a transonic axial compressor. Numerical analysis is conducted by solving three-dimensional steady Reynolds-averaged Navier-Stokes equations with the shear stress transport turbulence model. The results of flow analysis for an axial compressor with smooth casing are validated in comparison with experimental data for the pressure ratio and adiabatic efficiency. The numerical stall inception point is identified from the last converged point by convergence criteria, and the stall margin is predicted numerically. The peak adiabatic efficiency point is also obtained by reducing the normalized mass flow in the high mass flow region. In order to explore the influence of number of the circumferential casing grooves on the performance of the compressor, the stall margins and peak adiabatic efficiencies are evaluated compared to the case smooth casing. The stability of the axial compressor with circumferential casing grooves is found to be sensitively influenced by the number of grooves.
机译:这项工作调查了周向壳体槽对跨音轴压缩机的失速流动特性的影响。通过用剪切应力运输湍流模型求解三维稳态雷诺平均的Navier-Stokes方程来进行数值分析。与压力比和绝热效率的实验数据相比,验证了具有光滑壳体的轴向压缩机的流动分析结果。通过收敛标准从最后一个会聚点识别数值稳定点,并且在数字上预测失速余量。通过减少高质量流量区域中的归一化质量流量,还可以获得峰值绝热效率点。为了探讨圆周壳体槽的数量对压缩机性能的影响,与壳体平滑壳体相比,评估失速余量和峰值绝热效率。轴向压缩机具有周向套管槽的稳定性被发现受凹槽的数量敏感地影响。

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