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首页> 外文期刊>Journal of turbomachinery >Volume Dynamics Propulsion System Modeling for Supersonics Vehicle Research
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Volume Dynamics Propulsion System Modeling for Supersonics Vehicle Research

机译:超音速车辆研究的体积动力学推进系统建模

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摘要

Under the NASA Fundamental Aeronautics Program, the Supersonics Project is working to overcome the obstacles to supersonic commercial flight. The proposed vehicles are long, slim body aircrafts with pronounced aeroservoelastic modes. These modes can potentially couple with propulsion system dynamics, leading to performance challenges such as aircraft ride quality and stability. Other disturbances upstream of the engine generated from atmospheric wind gusts, angle of attack, and yaw can have similar effects. In addition, for optimal propulsion system performance, normal inlet-engine operations are required to be closer to compressor stall and inlet unstart. To study these phenomena, an integrated model is needed that includes both airframe structural dynamics and the propulsion system dynamics. This paper covers the propulsion system component volume dynamics modeling of a turbojet engine that will be used for an integrated vehicle aeropropulsoservoelastic model and for propulsion efficiency studies.
机译:在NASA基本航空计划下,超音速项目正在努力克服超音速商业飞行的障碍。拟议的车辆是具有显着的航空弹性模式的细长型车身飞机。这些模式可能会与推进系统动力学耦合,从而导致性能挑战,例如飞机的乘坐质量和稳定性。由大气阵风,迎角和偏航引起的发动机上游的其他扰动也会产生类似的影响。另外,为了获得最佳的推进系统性能,要求正常的进气道发动机操作更接近压缩机失速和进气道未起动。为了研究这些现象,需要一个集成模型,其中包括机身结构动力学和推进系统动力学。本文介绍了涡轮喷气发动机的推进系统组件体积动力学模型,该模型将用于集成的车辆气动伺服弹性模型和推进效率研究。

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