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Investigation of Chinook helicopter operations with an external slung load after cable failure

机译:电缆故障后外部悬挂负载的奇努克直升机的调查

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The Royal Netherlands Air Force (RNLAF) conducts frequent operations of Chinook helicopters with external slung loads. The normal RNLAF practice is for large external loads to be underslung by means of a two-strop suspension system backed up by a third point of suspension, the so-called 'redundant HUSLE (Helicopter Underslung Load Equipment)' comprising a redundant set of slings which come into action if one of the normal strops fails. The redundant HUSLE is relatively expensive in terms of time and operating costs. The present work has investigated the behaviour of a Chinook helicopter with an underslung load following failure of a front or rear strop, to determine whether the three-point suspension system can be safely replaced by a two-point suspension, eliminating the redundant HUSLE. The paper will demonstrate that although in general the redundant HUSLE results in a less violent helicopter reaction to a cable failure, it does not necessarily guarantee safety. It is concluded that flying with loads up to around two tonnes could be done safely with a two-point suspension system. A novel feature of this analysis of helicopter operations with slung loads is the integrated approach used for simulating pilot-in-the-loop load failures using a full non-linear model.
机译:荷兰皇家空军(RNLAF)经常对带有外部悬挂载荷的奇努克直升机进行操作。正常的RNLAF做法是通过两行悬架系统将大外部负载悬空,该系统由第三悬架支撑,所谓的“冗余HUSLE(直升机悬空负载设备)”包括一组冗余吊索如果正常滑行之一发生故障,则该规则生效。就时间和运营成本而言,冗余HUSLE相对昂贵。当前的工作已经研究了前悬架或后悬架失效后支腿负重的奇努克直升机的行为,以确定三点悬架系统是否可以安全地替换为两点悬架,从而消除了多余的HUSLE。该文件将证明,尽管一般而言,冗余HUSLE导致直升机对电缆故障的反应不太剧烈,但并不一定保证安全。结论是,使用两点悬挂系统可以安全地完成重达两吨的飞行。这种对带有倾斜负载的直升机操作进行分析的新功能是使用完整非线性模型来模拟在环飞行员负载失效的集成方法。

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