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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Investigation and Prediction of Steam-Induced Stall-Margin Reduction in Two Transonic Rotor Fans
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Investigation and Prediction of Steam-Induced Stall-Margin Reduction in Two Transonic Rotor Fans

机译:两个跨音速转子风扇中蒸汽引起的失速裕度降低的研究与预测

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摘要

An investigation into the behavior of two transonic compressor rotors operating at near-stall conditions while ingesting hot-steam was undertaken. This type of inlet flow was similar to that experienced by naval aircraft during steam catapult launches and has had the potential to adversely affect engine performance. The research was divided into three broad areas: experimental, theoretical and numerical. The first area, experimental, used the Naval Postgraduate School's transonic compressor rig. The rig was modified to introduce hot steam into the inlet flow during testing. Two rotor-only tests were completed; one with an unswept rotor and the other with a forward swept rotor. The experimental program yielded two sets of results. The first recorded data on the operational behavior of a transonic compressor ingesting a super-heated steam and air mixture, notably the quantification of the stall margin (SM) reduction. The second data set captured transient measurements of the inlet flow gas properties. The transient inlet data were then used in the second research area; a theoretical analysis based on a thermodynamic model of the inlet flow. Prior to this investigation, little information was available for higher temperature steam-air mixtures of this type. The analysis used certain simplifying assumptions to perform a fundamental of the inflow which yielded the inlet flow transient changes of specific heat capacities, gas constants, and, therefore, sonic velocities. Using these transient inlet properties, the third area of the investigation was performed, developing a numerical model. A fully transient simulation over the time period of an ingestion event would not be practical due to the large computational requirements needed. A quasi-transient method with large intermediate time steps was developed. The method is presented and was found to be reasonable at predicting the stall-margin reduction when compared to the available experimental results. These results would have potential use in design applications and for evaluating existing compressor steam ingestion tolerance.
机译:研究了两个跨音速压缩机转子在吸收热蒸汽的同时在接近失速条件下的行为。这种类型的进气流类似于海军飞机在蒸汽弹射器发射期间所经历的进气流,并且有可能对发动机性能产生不利影响。研究分为三个主要领域:实验,理论和数值。第一个领域是实验性的,使用了海军研究生院的跨音速压缩机装置。对钻机进行了修改,以在测试过程中将热蒸汽引入入口流。完成了两个仅转子的测试;一个带有未扫描的转子,另一个带有前向扫描的转子。实验程序产生了两组结果。有关跨音速压缩机吸入过热蒸汽和空气混合物的运行行为的首次记录数据,尤其是失速裕度(SM)降低的量化。第二个数据集捕获了进气流量气体特性的瞬态测量值。然后,在第二个研究区域中使用了瞬时入口数据。基于入口流热力学模型的理论分析。在进行此研究之前,很少有此类高温蒸汽-空气混合物的信息。该分析使用某些简化的假设来执行流入的基本操作,从而产生了入口流量瞬变的比热容,气体常数以及声速的变化。利用这些瞬态入口特性,进行了研究的第三部分,建立了数值模型。由于需要大量的计算需求,因此在摄入事件的时间段内进行完全瞬态仿真是不切实际的。提出了一种具有较大中间时间步长的准瞬态方法。提出了该方法,与现有的实验结果相比,该方法在预测失速裕度降低方面是合理的。这些结果在设计应用和评估现有压缩机蒸汽摄入耐受性方面可能具有潜在用途。

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