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Performance Benefits for Wave Rotor-Topped Gas Turbine Engines

机译:波浪转子式燃气涡轮发动机的性能优势

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摘要

The benefits of wave rotor-topping in turboshaft engines, subsonic high-bypass turbofan engines, auxiliary power units, and ground power units are evaluated. The thermodynamic cycle performance is modeled using a one-dimensional steady-state code; wave rotor performance is modeled using one-dimensional design/analysis codes. Design and off-design engine performance is calculated for baseline engines and wave rotor-topped engines, where the wave rotor acts as a high pressure spool. The wave rotor-enhanced engines are shown to have benefits in specific power and specific fuel flow over the baseline engines without increasing turbine inlet temperature. The off-design steady-state behavior of a wave rotor-topped engine is shown to be similar to a conventional engine. Mission studies are performed to quantify aircraft performance benefits for various wave rotor cycle and weight parameters. Gas turbine engine cycles most likely to benefit from wave rotor-topping are identified. Issues of practical integration and the corresponding technical challenges with various engine types are discussed.
机译:评估了涡轮轴发动机,亚音速高旁路涡轮风扇发动机,辅助动力装置和地面动力装置中波状转子陀飞的好处。使用一维稳态代码对热力学循环性能进行建模。使用一维设计/分析代码对波浪转子的性能进行建模。计算基准发动机和顶旋翼式发动机的设计和非设计发动机性能,其中波压转子充当高压滑阀。示出了波浪转子增强型发动机与基准发动机相比在比功率和比燃料流量方面具有优势,而没有增加涡轮进口温度。波形波顶式发动机的偏离设计稳态性能显示为与常规发动机相似。进行了任务研究,以量化飞机在各种波动转子周期和重量参数下的性能优势。确定了最有可能受益于波浪转子打顶的燃气轮机发动机循环。讨论了各种发动机类型的实际集成问题和相应的技术挑战。

著录项

  • 作者单位
  • 年度 1996
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  • 原文格式 PDF
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  • 入库时间 2022-08-20 20:30:11

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