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Aerodynamic Effects and Modeling of Damage to Transport Aircraft

机译:航空动力学效应和对运输机损害的建模

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摘要

A wind tunnel investigation was conducted to measure the aerodynamic effects of damage to lifting and stability/control surfaces of a commercial transport aircraft configuration. The modeling of such effects is necessary for the development of flight control systems to recover aircraft from adverse, damage-related loss-of-control events, as well as for the estimation of aerodynamic characteristics from flight data under such conditions. Damage in the form of partial or total loss of area was applied to the wing, horizontal tail, and vertical tail. Aerodynamic stability and control implications of damage to each surface are presented, to aid in the identification of potential boundaries in recoverable stability or control degradation. The aerodynamic modeling issues raised by the wind tunnel results are discussed, particularly the additional modeling requirements necessitated by asymmetries due to damage, and the potential benefits of such expanded modeling.
机译:进行了风洞调查,以测量损坏商用运输机配置的升力和稳定性/控制面的空气动力效应。为了开发飞行控制系统以使飞机从不利的,与损害有关的失控事件中恢复过来,以及从这种情况下的飞行数据估算空气动力特性,必须对这种影响进行建模。对机翼,水平尾翼和垂直尾翼施加了部分或全部面积损失的形式的损害。介绍了对每个表面造成损坏的空气动力学稳定性和控制含义,以帮助确定可恢复稳定性或控制退化中的潜在边界。讨论了由风洞结果引起的空气动力学建模问题,特别是由于损坏引起的不对称性所必需的附加建模要求,以及这种扩展建模的潜在好处。

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    Shah, Gautam H.;

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  • 年度 2008
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