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An Engine Research Program Focused on Low Pressure Turbine Aerodynamic Performance

机译:专注于低压涡轮空气动力性能的发动机研究计划

摘要

A comprehensive test program was performed in the Propulsion Systems Laboratory at the NASA Glenn Research Center, Cleveland Ohio using a highly instrumented Pratt and Whitney Canada PW 545 turbofan engine. A key objective of this program was the development of a high-altitude database on small, high-bypass ratio engine performance and operability. In particular, the program documents the impact of altitude (Reynolds Number) on the aero-performance of the low-pressure turbine (fan turbine). A second objective was to assess the ability of a state-of-the-art CFD code to predict the effect of Reynolds number on the efficiency of the low-pressure turbine. CFD simulation performed prior and after the engine tests will be presented and discussed. Key findings are the ability of a state-of-the art CFD code to accurately predict the impact of Reynolds Number on the efficiency and flow capacity of the low-pressure turbine. In addition the CFD simulations showed the turbulent intensity exiting the low-pressure turbine to be high (9%). The level is consistent with measurements taken within an engine.
机译:在美国俄亥俄州克利夫兰美国国家航空航天局格伦研究中心的推进系统实验室中,使用配备了高性能的加拿大普惠公司的PW 545涡扇发动机,进行了全面的测试程序。该程序的主要目标是开发有关小型高旁路比发动机性能和可操作性的高空数据库。该程序特别记录了海拔(雷诺数)对低压涡轮(风扇涡轮)的空气动力性能的影响。第二个目标是评估最新的CFD代码预测雷诺数对低压涡轮效率的影响的能力。将介绍和讨论发动机测试之前和之后执行的CFD仿真。关键发现是最新的CFD代码能够准确预测雷诺数对低压涡轮效率和流量的影响。另外,CFD模拟显示离开低压涡轮的湍流强度很高(9%)。该水平与发动机内进行的测量一致。

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