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NUMERICAL STUDY ON EFFECTS OF AXIAL-SLOT CASING TREATMENT ON PEAK EFFICIENCY OF AXIAL COMPRESSORS

机译:轴向槽套管处理对轴流压气机峰值效率影响的数值研究

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Axial compressors can obtain substantial improvement on stall margin by using axial-slot casing treatments. However, this type of casing treatment usually yields large peak efficiency penalty due to the interaction between the slots and rotor tip region where the tip leakage flow plays an important role. Therefore, as a main factor that influences the peak efficiency, the tip leakage loss was examined in this paper with a variety of slot geometries. Unsteady numerical simulations were performed on both low speed and transonic compressors with axial skewed slot casing treatments with different geometric parameters. In addition, an equation which can be applied to evaluate the tip leakage loss under casing treatment cases was derived from Denton's leakage mixing model. The leakage loss can be expressed in terms of the cube of the tip leakage flow rate. Combined with the simulation results, the effects of the number, depth and width of the slots on both the leakage loss and peak efficiency deficit were investigated. For the transonic compressor, the impacts of shock wave and its interaction with the tip leakage flow /vortex were assessed as well. Lastly, two axial-slot casing treatments with an isosceles-trapezoid shaped opening were designed to reduce the loss in the rotor tip region. It was shown that the newly designed axial-slot casing treatments were capable of improving the peak efficiency of both compressors.
机译:轴流式压缩机通过使用轴向槽式套管处理,可以在失速裕度方面获得实质性的改善。但是,由于槽与转子尖端区域之间的相互作用(尖端泄漏流起着重要作用),这种类型的套管处理通常会产生较大的峰值效率损失。因此,作为影响峰值效率的主要因素,本文研究了具有各种缝隙几何形状的尖端泄漏损耗。在具有不同几何参数的轴向偏斜槽套管处理的低速和跨音速压缩机上都进行了非稳态数值模拟。此外,从Denton的泄漏混合模型中导出了可用于评估套管处理情况下的尖端泄漏损失的方程式。泄漏损失可以用尖端泄漏流量的立方来表示。结合仿真结果,研究了缝隙的数量,深度和宽度对泄漏损耗和峰值效率不足的影响。对于跨音速压缩机,还评估了冲击波的影响及其与尖端泄漏流/涡流的相互作用。最后,设计了两种带有等腰梯形开口的轴向槽套管处理方法,以减少转子尖端区域的损失。结果表明,新设计的轴向槽套管处理能够提高两个压缩机的峰值效率。

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