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Optimal recovery from microburst wind shear

机译:微爆风切变的最佳回收率

摘要

Severe low-altitude wind variability represents an infrequent but significant hazard to aircraft taking off or landing. During the period from 1964 to 1985, microburst wind shear was a contributing factor in at least 26 civil aviation accidents involving nearly 500 fatalities and over 200 injuries. A microburst is a strong localized downdraft that strikes the ground, creating winds that diverge radially from the impact point. The physics of microbursts have only been recently understood in detail, and it has been found that effective recovery from inadvertent encounters may require piloting techniques that are counter-intuitive to flight crews. The goal of this work was to optimize the flight path of a twin-jet transport aircraft encountering a microburst during approach to landing. The objective was to execute an escape maneuver that maintained safe ground clearance and an adequate stall margin during the climb-out portion of the trajectory.
机译:严重的低空风变率对飞机起飞或降落表示罕见但严重的危害。在1964年至1985年期间,微暴风切变是至少26起民航事故的诱因,涉及近500人死亡和200多人受伤。微暴是强烈的局部向下气流,撞击地面,产生的风从撞击点径向散开。微爆发的物理学只是最近才被详细了解,并且已经发现,从意外遭遇中有效恢复可能需要与飞行机组人员有悖常理的飞行员技术。这项工作的目的是优化双喷气运输机的着陆过程中遇到微爆的飞行路径。目的是执行一次逃生动作,以在轨迹的爬升部分保持安全的离地间隙和足够的失速裕度。

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  • 作者

    Mulgund Sandeep S.;

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  • 年度 1993
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