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Dynamics Modeling and Simulation of Large Transport Airplanes in Upset Conditions

机译:大型运输飞机在颠簸条件下的动力学建模和仿真

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摘要

As part of NASA's Aviation Safety and Security Program, research has been in progress to develop aerodynamic modeling methods for simulations that accurately predict the flight dynamics characteristics of large transport airplanes in upset conditions. The motivation for this research stems from the recognition that simulation is a vital tool for addressing loss-of-control accidents, including applications to pilot training, accident reconstruction, and advanced control system analysis. The ultimate goal of this effort is to contribute to the reduction of the fatal accident rate due to loss-of-control. Research activities have involved accident analyses, wind tunnel testing, and piloted simulation. Results have shown that significant improvements in simulation fidelity for upset conditions, compared to current training simulations, can be achieved using state-of-the-art wind tunnel testing and aerodynamic modeling methods. This paper provides a summary of research completed to date and includes discussion on key technical results, lessons learned, and future research needs.
机译:作为NASA航空安全和安保计划的一部分,正在研究开发用于模拟的空气动力学建模方法,以准确预测大型运输机在颠簸条件下的飞行动力学特性。这项研究的动机源于人们的认识,即模拟是解决失控事故的重要工具,包括在飞行员培训,事故重建和高级控制系统分析中的应用。这项工作的最终目标是为降低由于失控造成的致命事故率做出贡献。研究活动涉及事故分析,风洞测试和模拟试验。结果表明,与最新的训练模拟相比,使用最新的风洞测试和空气动力学建模方法可以显着改善不适条件下的模拟保真度。本文提供了迄今为止已完成的研究的摘要,并包括了对关键技术成果,经验教训和未来研究需求的讨论。

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