Effects of Probe Stem Surface Suction on the Aerodynamic Performance of a Compressor

Yafei Zhong, Hongwei Ma, Yi Yang
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引用次数: 4

Abstract

Pneumatic probes can be used to obtain the flow field parameters such as pressure, temperature and air flow angle, and has been widely used to measure the flow field in compressors. When probes are inserted into the compressor to measure the flow field, the probe stems will cause blockage in the flow field and interfere with it, reducing the pressure ratio and efficiency of the compressor. This paper proposes a method to reduce the interference of the stems by their surface suction. Three-dimensional models of a compressor with different types of probe stems were established. Computational Fluid Dynamics (CFD) simulations of the flow within a low-speed compressor without/with the probe stems and the stems having surface suction holes were conducted. The involved numerical methods were validated by the experimental data. The effects of the surface suction holes on the performance of this compressor were compared and analyzed in terms of blockage coefficient in the passage by the vortex identification method. The results show that probe stem surface suction can reduce the blockage of the stems on the downstream flow field. Compared with the situation of no suction, there is an optimal suction mass flow rate that can minimize the adverse effect of probe stems on the compressor aerodynamic performance. For the same type of the probe stems, the compressor performances, i.e., pressure ratio, efficiency and stability margin, are recovered with the increase of the number of suction holes along the span-wise direction.
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探杆表面吸力对压气机气动性能的影响
气动探头可用于获取压力、温度、气流角等流场参数,已广泛应用于压缩机内流场的测量。当探头插入压缩机测量流场时,探头杆会对流场造成堵塞和干扰,降低压缩机的压比和效率。本文提出了一种利用阀杆表面吸力来减小阀杆干涉的方法。建立了具有不同类型测杆的压缩机的三维模型。采用计算流体动力学(CFD)方法对无/带探头杆和带表面吸力孔的阀杆进行了低速压缩机内部流动模拟。所涉及的数值方法得到了实验数据的验证。采用涡流识别方法,从通道内堵塞系数的角度比较分析了表面吸力孔对压缩机性能的影响。结果表明,探头阀杆表面吸力可以减小阀杆对下游流场的堵塞。与无吸力的情况相比,存在一个最优的吸力质量流量,可以使探头杆对压气机气动性能的不利影响最小化。对于同一类型的探杆,沿跨向吸力孔数的增加,压缩机的压比、效率和稳定裕度等性能均有所恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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