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Dynamic Simulation of a Wave Rotor Topped Turboshaft Engine

机译:波浪转子顶置涡轮轴发动机的动态仿真

摘要

The dynamic behavior of a wave rotor topped turboshaft engine is examined using a numerical simulation. The simulation utilizes an explicit, one-dimensional, multi-passage, CFD based wave rotor code in combination with an implicit, one-dimensional, component level dynamic engine simulation code. Transient responses to rapid fuel flow rate changes and compressor inlet pressure changes are simulated and compared with those of a similarly sized, untopped, turboshaft engine. Results indicate that the wave rotor topped engine responds in a stable, and rapid manner. Furthermore, during certain transient operations, the wave rotor actually tends to enhance engine stability. In particular, there is no tendency toward surge in the compressor of the wave rotor topped engine during rapid acceleration. In fact, the compressor actually moves slightly away from the surge line during this transient. This behavior is precisely the opposite to that of an untopped engine. The simulation is described. Issues associated with integrating CFD and component level codes are discussed. Results from several transient simulations are presented and discussed.
机译:使用数值模拟检查了波浪转子式涡轮轴发动机的动态性能。该模拟利用了基于CFD的明确的一维,多通道,波动转子代码以及隐式的一维组件级动态引擎仿真代码。模拟了对快速燃料流量变化和压缩机进气压力变化的瞬态响应,并将其与类似尺寸的无顶涡轮轴发动机的瞬态响应进行了比较。结果表明,波浪转子超顶发动机以稳定,快速的方式响应。此外,在某些瞬态操作期间,波转子实际上趋于增强发动机稳定性。特别地,在快速加速期间,在波浪转子顶部的发动机的压缩机中不存在喘振的趋势。实际上,在此瞬变期间,压缩机实际上实际上稍微远离喘振线。这种行为恰恰与无顶发动机的行为相反。描述了仿真。讨论了与集成CFD和组件级代码相关的问题。提出并讨论了几个瞬态仿真的结果。

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