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Propulsion System Dynamic Modeling of the NASA Supersonic Concept Vehicle for AeroPropulsoServoElasticity

机译:用于航空推进伺服弹性的NASA超音速概念车的推进系统动力学建模

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A summary of the propulsion system modeling under NASA's High Speed Project (HSP) AeroPropulsoServoElasticity (APSE) task is provided with a focus on the propulsion system for the low-boom supersonic configuration developed by Lockheed Martin and referred to as the N+2 configuration. This summary includes details on the effort to date to develop computational models for the various propulsion system components. The objective of this paper is to summarize the model development effort in this task, while providing more detail in the modeling areas that have not been previously published. The purpose of the propulsion system modeling and the overall APSE effort is to develop an integrated dynamic vehicle model to conduct appropriate unsteady analysis of supersonic vehicle performance. This integrated APSE system model concept includes the propulsion system model, and the vehicle structural-aerodynamics model. The development to date of such a preliminary integrated model will also be summarized in this report.
机译:NASA的高速项目(HSP)AeroPropulsoServoElasticity(APSE)任务下的推进系统建模摘要,重点介绍了由洛克希德·马丁公司(Lockheed Martin)开发的用于低臂超音速配置的推进系统,称为N + 2配置。该摘要包括迄今为止为各种推进系统组件开发计算模型所付出的努力的细节。本文的目的是总结此任务中的模型开发工作,同时在尚未发布的建模领域中提供更多详细信息。推进系统建模和APSE总体工作的目的是开发一种集成的动态车辆模型,以对超音速车辆的性能进行适当的非稳态分析。集成的APSE系统模型概念包括推进系统模型和车辆结构空气动力学模型。迄今为止,这种初步集成模型的发展也将在本报告中进行总结。

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