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Wave rotor-enhanced gas turbine engines

机译:波浪转子增强型燃气涡轮发动机

摘要

The benefits of wave rotor-topping in small (400 to 600 hp-class) and intermediate (3000 to 4000 hp-class) turboshaft engines, and large (80,000 to 100,000 lb(sub f)-class) high bypass ratio turbofan engines are evaluated. Wave rotor performance levels are calculated using a one-dimensional design/analysis code. Baseline and wave rotor-enhanced engine performance levels are obtained from a cycle deck in which the wave rotor is represented as a burner with pressure gain. Wave rotor-toppings is shown to significantly enhance the specific fuel consumption and specific power of small and intermediate size turboshaft engines. The specific fuel consumption of the wave rotor-enhanced large turbofan engine can be reduced while operating at significantly reduced turbine inlet temperature. The wave rotor-enhanced engine is shown to behave off-design like a conventional engine. Discussion concerning the impact of the wave rotor/gas turbine engine integration identifies tenable technical challenges.
机译:小型(400至600 hp级)和中级(3000至4000 hp级)涡轮轴发动机以及大型(80,000至100,000 lb(sub f)级)高旁路比涡轮风扇发动机的波转子陀飞优势是评估。波浪转子的性能水平是使用一维设计/分析代码计算的。基线和波浪转子增强的发动机性能水平是从自行车甲板获得的,其中波浪转子被表示为具有压力增益的燃烧器。波浪式转子顶盖显示出可显着提高中小型涡轮轴发动机的比油耗和比功率。当在显着降低的涡轮进口温度下运行时,可以降低波浪转子增强型大型涡轮风扇发动机的单位燃油消耗。波形转子增强型发动机表现出与常规发动机不同的设计性能。有关波浪转子/燃气涡轮发动机集成的影响的讨论确定了可克服的技术挑战。

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