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Humidity effects on the aerodynamic performance of a transonic compressor cascade

机译:湿度对跨音跨压缩机级联的空气动力学性能的影响

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Humid air degrades gas turbine aerodynamic performance. However, little is known about humidity effects on the compressor flow field. Blade loading distribution, deviation, and loss coefficient have been measured in a transonic compressor cascade for relative humidity (RH) values of 20, 32, 42, 45, 49 and 53% at Mach number of 1.11 and incidence of +5 degrees. In addition, numerical studies have been conducted for the same conditions by incorporating the Classical Nucleation Theory (CNT) model and Hertz-Knudsen droplet growth model into ANSYS FLUENT. As the relative humidity increases, due to condensation, the pressure of upstream of the shock on the suction surface is increased; the pressure on the pressure surface is decreased; and shock is pushed downstream, reducing shock strength. However, due to the negligible shock-induced boundary layer separation, humidity has little effect on deviation. Loss coefficient is increased as the relative humidity increases because, even though the shock loss is reduced, heat addition to the flow from condensation decreases total pressure. (C) 2019 Elsevier Ltd. All rights reserved.
机译:潮湿的空气降低燃气轮机空气动力学性能。然而,关于压缩机流场的湿度效应几乎是知之甚少。在MACH数为1.11的MACH数和22,42,45,49和53%的相对湿度(RH)值的跨音速压缩机级联中测量刀片装载分布,偏差和损耗系数。此外,通过将经典成核理论(CNT)模型和赫兹 - 克鲁森液滴生长模型掺入ANSYS流畅的情况下,已经在相同的条件下进行了数值研究。随着相对湿度的增加,由于冷凝,由于缩合,吸入表面上游的压力增加;压力表面上的压力降低;和震动被推下游,减少震荡力量。然而,由于休克诱导的边界层分离可忽略不计,湿度几乎没有对偏差影响。随着相对湿度的增加,损耗系数增加,因为即使减少冲击损失,即使减少了冲击损失,透明的流量也会降低总压力。 (c)2019 Elsevier Ltd.保留所有权利。

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