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Aerodynamic analysis of nonuniform trailing edge blowing

机译:后缘吹气不均匀的空气动力学分析

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Purpose Numerical and experimental results for different oncoming base-flow conditions indicate that nonuniform trailing edge blowing (NTEB) can expand the performance range of compressors and reduce the thrust on the rotor, while the efficiency of the compressor can be improved by more than 2 per cent.Design/methodology/approach Relevant aerodynamic parameters, such as total pressure, ratio of efficiency and axial thrust, are calculated and analyzed under conditions with and without NTEB. Measurements are performed downstream of two adjacent stator blades, at seven equidistantly spaced reference locations. The experimental measurement of the interstage flow field used a dynamic four-hole probe with phase lock technique.Findings An axial low-speed single-stage compressor was established with flow field measurement system and nonuniform blowing system. NTEB was studied by means of numerical simulations and experiments, and it is found that the efficiency of the tested compressor can be improved by more than 2 per cent.Originality/value Unlike most of the previous research studies which mainly focused on the rotor/stator interaction and trailing edge uniform blowing, the research results summarized in the current paper on the stator/rotor interaction used inlet guide vanes for steady and unsteady calculations. An active control of the interstage flow field in a low-speed compressor was used to widen the working range and improve the performance of the compressor.
机译:目的针对不同的即将来临的基流条件的数值和实验结果表明,不均匀的后缘吹气(NTEB)可以扩大压缩机的性能范围并减少对转子的推力,而压缩机的效率可以提高2个/倍以上。设计/方法/方法在有和没有NTEB的条件下,计算和分析相关的空气动力学参数,例如总压力,效率比和轴向推力。在两个等距间隔的参考位置的两个相邻定子叶片的下游进行测量。采用带锁相技术的动态四孔探针对级间流场进行实验测量。结果建立了具有流场测量系统和非均匀吹气系统的轴向低速单级压缩机。通过数值模拟和实验研究了NTEB,发现被测压缩机的效率可以提高2%以上。原始数据/值与以往大多数研究主要集中在转子/定子上的研究不同相互作用和后缘均匀吹气,目前的研究成果总结在关于定子/转子相互作用的研究中,使用入口导流叶片进行稳态和非稳态计算。对低速压缩机的级间流场进行主动控制可扩大工作范围并改善压缩机性能。

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