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Fluid–structure interaction analysis of the drop impact test for helicopter fuel tank

机译:直升机油箱跌落冲击试验的流固耦合分析

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摘要

The crashworthiness of helicopter fuel tank is vital to the survivability of the passengers and structures. In order to understand and improve the crashworthiness of the soft fuel tank of helicopter during the crash, this paper investigated the dynamic behavior of the nylon woven fabric composite fuel tank striking on the ground. A fluid–structure interaction finite element model of the fuel tank based on the arbitrary Lagrangian–Eulerian method was constructed to elucidate the dynamic failure behavior. The drop impact tests were conducted to validate the accuracy of the numerical simulation. Good agreement was achieved between the experimental and numerical results of the impact force with the ground. The influences of the impact velocity, the impact angle, the thickness of the fuel tank wall and the volume fraction of water on the dynamic responses of the dropped fuel tank were studied. The results indicated that the corner of the fuel tank is the most vulnerable location during the impact with ground.
机译:直升机油箱的耐撞性对于乘客和建筑物的生存能力至关重要。为了了解和提高直升机软油箱在坠毁过程中的耐撞性,本文研究了尼龙机织复合油箱撞击地面的动力特性。建立了基于任意拉格朗日-欧拉方法的油箱流固耦合有限元模型,以阐明动态破坏行为。进行跌落冲击试验以验证数值模拟的准确性。地面冲击力的实验结果和数值结果之间取得了很好的一致性。研究了撞击速度,撞击角度,油箱壁厚和水的体积分数对下落的油箱动力响应的影响。结果表明,在与地面碰撞期间,油箱的拐角处是最容易受到伤害的位置。

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