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Computational Exploration of A Two-spool High Bypass Turbofan Engine's Component Deterioration Effects on Engine Performance

机译:两种阀芯高旁路涡发发动机组件对发动机性能劣化影响的计算探索

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Aircraft engines are exposed to degradation due to several factors such as environmental air pollution, fuel content and ageing or degradation of engine's components, which are experienced within specified time. While the turbofan in operation, its components deteriorate and consequently affect its performance. This study is aimed to computationally investigate the effect of components degradation on engine performance. A high bypass turbofan engine operated at cruise is selected for this evaluation and the simulation was performed using the Gas Turbine Simulation Program (GSP). The affected components considered are turbines and compressors with deterioration rate ranging from 0% to 5%. The effect of selected deterioration rate on engine thrust and thrust specific fuel consumption (TSFC) is studied. Results obtained show an agreement with literature where reduction in engine thrust and TSFC are observed. Turbine's fouling has been found to be more severe than erosion in terms of power and efficiency losses. However, in terms of the overall performance, the erosion effect is more severe than fouling.
机译:由于诸如环境空气污染,燃料含量和老化或发动机组件的衰老等几个因素,飞机发动机暴露于降解,这在特定时间内经历过的发动机组件。虽然涡轮箱在操作中,其组件恶化并因此影响其性能。本研究旨在计算分量对发动机性能下降的影响。选择在巡航处运行的高旁路涡轮通发动机进行该评估,并使用燃气轮机仿真程序(GSP)进行仿真。所考虑的受影响的组件是涡轮机和压缩机,劣化率范围为0%至5%。研究了所选劣化率对发动机推力和推力特异性燃料消耗(TSFC)的影响。获得的结果显示了与文献的协议,其中观察到发动机推力和TSFC的降低。在电力和效率损失方面,已经发现涡轮的污垢比侵蚀更严重。然而,就整体性能而言,侵蚀效果比结垢更严重。

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