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Simulation Analysis of Hydrodynamic Ram Phenomenon in Composite Fuel Tank to Fragment Impact

机译:复合燃料箱内液压冲击现象的碎片碰撞仿真分析。

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Hydrodynamic ram (HRAM) caused by fragments impacting and penetrating through fuel tanks has great effect on aircraft survivability. In the present paper, in order to evaluate the damage characteristics of a composite fuel tank facing fragments impacting, the finite-element code PAM-Crash has been employed to simulate an HRAM event. Using Smoothing Particle Hydrodynamics (SPH) method, the fluid-Cstructure interaction between walls and fuel has been solved. Basing on comparative analyses on damage degree of different position, high risk region has been confirmed. Through comparing with aluminum tank, the characteristics of damage and failure of the composite tank are analyzed. Emulation results show that the approach of SPH is capable of analyzing the HRAM. Comparing with metal tank, composite tank is easier to occur overall damage on many walls, but it has clear direction and can be forecasted, and easy to table improving proposals.
机译:碎片撞击并穿透燃油箱所引起的流体动压撞(HRAM)对飞机的生存能力有很大影响。在本文中,为了评估面对碎片撞击的复合燃料箱的损伤特性,已使用有限元代码PAM-Crash来模拟HRAM事件。使用平滑粒子流体动力学(SPH)方法,解决了壁与燃料之间的流固耦合问题。通过对不同位置的损坏程度进行比较分析,确定了高风险区域。通过与铝制储罐的比较,分析了复合储罐的损坏和失效特性。仿真结果表明,SPH方法能够分析HRAM。与金属罐相比,复合罐更容易在许多墙壁上发生整体损坏,但方向明确且可以预测,并且易于提出改进建议。

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