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Evaluation of bird strike-induced damages of helicopter composite fuel tank assembly based on fluid-structure interaction analysis

机译:基于流固耦合分析的直升机复合燃油箱总成对鸟击造成的损伤评估

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We numerically investigated the structural behaviors and damage of a bird strike on a composite fuel tank assembly of a commercial KUH-1 Surion utility helicopter based on a fluid-structure interaction analysis. A coupled Eulerian-Lagrangian method and a smoothed particle hydrodynamic method were applied to consider the sloshing of fuel and replicate the impact behaviors of a bird strike, respectively. In addition, the Hashin failure criteria considering four composite damage modes was applied in the simulation. We found that not only the increase in the amount of fuel but also the curved geometry had a negative effect on the structural safety of the composite fuel tank during the impact. These findings will be used as reference data and guidelines for bird strike tests and airworthiness certification in the future.
机译:我们基于流固耦合分析,对一架商用KUH-1 Surion通用直升机的复合油箱总成的结构行为和鸟击的破坏进行了数值研究。应用耦合欧拉-拉格朗日方法和平滑粒子流体动力学方法来考虑燃料的晃动并分别复制鸟击的冲击行为。此外,在仿真中应用了考虑四种复合损伤模式的Hashin破坏准则。我们发现,不仅燃料量的增加,而且弯曲的几何形状在撞击过程中都对复合燃料箱的结构安全性产生负面影响。这些发现将在将来用作鸟击测试和适航认证的参考数据和指南。

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