燃烧室冷却特性对喷嘴导叶气膜冷却实验的影响

Nicholas E. Holgate, P. Ireland, E. Romero
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摘要

实验方法的最新进展使研究人员能够在燃烧室稀释口和端壁膜存在的情况下研究喷嘴导叶膜冷却。稀释剂注入造成了温度、速度和湍流的不均匀性,并且由于相互竞争的影响,对叶片膜冷却性能的理解变得复杂。在本研究中,稀释口温度分布在没有叶片膜冷却的情况下进行了测量,并与同时存在膜和稀释的情况下的膜效率测量进行了比较,说明了稀释口湍流对膜冷却性能的影响。研究发现,稀释口喷射可以在难以冷却的叶片停滞区创造显著的效率效益,因为更湍流的热主流增强了离开翼型表面的膜冷却剂射流的混合。还探讨了端壁薄膜冷却对红外叶片表面温度测量的影响。端壁温度的降低减少了该表面的热辐射,从而减少了测量时叶片表面反射的外来辐射量。详细的校准结果表明,如果不考虑这种效应,最大局部膜效测量误差可达0.05。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects of Combustor Cooling Features on Nozzle Guide Vane Film Cooling Experiments
Recent advances in experimental methods have allowed researchers to study nozzle guide vane film cooling in the presence of combustor dilution ports and endwall films. The dilution injection creates nonuniformities in temperature, velocity, and turbulence, and an understanding of the vane film cooling performance is complicated by competing influences. In this study, dilution port temperature profiles have been measured in the absence of vane film cooling and compared to film effectiveness measurements in the presence of both films and dilution, illustrating the effects of the dilution port turbulence on film cooling performance. It is found that dilution port injection can create significant effectiveness benefits at the difficult-to-cool vane stagnation region, due to the more turbulent hot mainstream enhancing the mixing of film coolant jets that have left the airfoil surface. Also explored are the implications of endwall film cooling for infrared vane surface temperature measurements. The reduced endwall temperatures reduce the thermal emissions from this surface, so reducing the amount of extraneous radiation reflected from the vane surface where measurements are being made. The results of a detailed calibration show that the maximum local film effectiveness measurement error could be up to 0.05 if this effect were to go unaccounted for.
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