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Application of Numerical Methods for Crashworthiness Investigation of a Large Aircraft Wing Impact with a Tree

机译:数值方法在大型飞机机翼撞击树的耐撞性研究中的应用

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This paper demonstrates application of a numerical methodology for full scale aircraft impact crashworthiness investigation. A special case, impact of an aircraft wing with a tree, was studied using LS-DYNA and ANSYS CFX. In particular, a detailed finite element model of the wing structure was represented as a box structure containing skin, spars and ribs, and fuel was represented as distributed mass. Several material models were utilized and verified using leading-edge bird strike and wood bending experiments. Wood model Mat 143 with material parameters developed based on the wood bending test was found as the most accurate in comparison with the experiment. The aerodynamic pressure distribution on the overall surface of the wing was accomplished using the commercially available Computational Fluid Dynamics (CFD) software ANSYS CFX. Results of the aerodynamic pressures on the wings surfaces were imported into the LS-DYNA finite element model. Parametric studies showed that a fragment of the leading edge of the wing was destroyed by the tree but the lifting surface of the wing was not destroyed. In every simulation scenario, the tree was cut by the first spar of the wing and fell in the direction of the movement of the airplane.
机译:本文演示了数值方法在飞机全面撞击性能研究中的应用。使用LS-DYNA和ANSYS CFX研究了一种特殊情况,即机翼与树木的碰撞。特别是,机翼结构的详细有限元模型表示为包含蒙皮,翼梁和肋骨的箱形结构,燃料表示为分布质量。利用了几种材料模型,并通过前沿的鸟击和木材弯曲实验进行了验证。与实验相比,发现具有基于木材弯曲测试开发的材料参数的木材模型Mat 143是最准确的。机翼整个表面上的空气动力学压力分布是使用市售的计算流体力学(CFD)软件ANSYS CFX实现的。机翼表面的空气动力压力结果输入到LS-DYNA有限元模型中。参数研究表明,机翼的前缘碎片被树所破坏,但机翼的升力面并未被破坏。在每个模拟场景中,树都被机翼的第一个翼梁割下并沿飞机运动的方向倒下。

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