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Numerical study on near-stall flow unsteadiness in an axial compressor with casing treatment

机译:轴流压气机壳体失速失稳数值研究。

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Time-accurate numerical calculations were performed to investigate unsteady flow features in a low-speed axial compressor. The test compressor has axial skewed slots over the rotor tip region as casing treatment to improve the stall margin. The calculated data are in good agreement with the measured data. This paper reports the effect of casing treatment and flow unsteadiness on the rotor near stall by examining the flows in the smooth wall and casing treatment cases. The axial skewed slot can remove the blockage induced by the tip clearance leakage flow by removing and injecting the flow near the tip. However, for the casing treatment case, blockage is induced near the hub because the hub-corner stall is caused by a decrease in the axial momentum in this region. The tip leakage flow has inherent unsteadiness in the smooth wall case caused by the relatively large tip clearance, whereas the hub-corner stall has unsteadiness in the casing treatment case. The two types of unsteadiness have functions in inducing stall inception. Furthermore, axial slots of different sizes were tested to examine the effect of slot geometry on rotor flow stability. The change in flow structure related to the stall inception was subject to flow injection through the recirculation in the slots.
机译:进行了时间精确的数值计算,以研究低速轴流压缩机中的非定常流动特征。测试压缩机在转子尖端区域上方有轴向偏斜槽,作为套管处理以提高失速裕度。计算数据与实测数据吻合良好。本文通过检查光滑壁和套管处理案例中的流量,报告了套管处理和流动不稳定对失速附近转子的影响。轴向倾斜槽可通过移除并注入尖端附近的流体来消除由尖端间隙泄漏流引起的阻塞。然而,对于套管处理情况,因为轮毂角失速是由该区域中轴向动量的减小引起的,所以在轮毂附近会引起阻塞。尖端泄漏流在光滑的壁箱中具有固有的不稳定,这是由相对较大的尖端间隙引起的,而轮毂转角失速在套管处理情况下具有不稳定的情况。两种类型的不稳定具有诱发失速开始的功能。此外,测试了不同尺寸的轴向槽,以检查槽几何形状对转子流动稳定性的影响。与失速开始有关的流量结构变化通过槽中的再循环受到流量注入。

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