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Modelling strategies for numerical simulation of aircraft ditching

机译:飞机排水沟数值模拟的建模策略

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摘要

Ditching, which is a controlled landing of an airplane on water, is an emergency condition to be investigated in order to improve the aircraft global crashworthiness. The complex hydrodynamic phenomena involved in ditching events are difficult to simulate and the accuracy of the results depends on the capability to reproduce the forces related to the interaction of the fuselage with the water surface. In the first part of the paper, the vertical impact on water of a rigid sphere is analysed using the explicit solver LS-DYNA in order to compare different modelling strategies. Four models of the fluid domain are presented: Lagrangian, arbitrary Lagrangian-Eulerian, smoothed particle hydrodynamics and hybrid Lagrangian-smoothed particle hydrodynamics. In the second part, the ditching of a scaled simplified airplane is simulated considering two different models for the water region. Experimental data from the literature are used to validate the simulations. The analysis, where the water and the air are modelled with the arbitrary Lagrangian-Eulerian method, shows a better correlation with the experimental data because this formulation can reproduce the suction force which acts on the fuselage and affects significantly the ditching dynamics.
机译:开沟是飞机在水上的有控制着陆,是一种紧急情况,需要进行调查,以提高飞机的整体耐撞性。难以模拟沟渠事件中涉及的复杂水动力现象,并且结果的准确性取决于再现与机身与水面相互作用相关的力的能力。在本文的第一部分中,使用显式求解器LS-DYNA分析了刚体对水的垂直冲击,以便比较不同的建模策略。提出了四种流体域模型:拉格朗日,任意拉格朗日-欧拉,光滑粒子流体动力学和混合拉格朗日平滑颗粒流体动力学。在第二部分中,考虑了两个不同的水域模型,模拟了比例尺简化飞机的排水情况。来自文献的实验数据用于验证仿真。通过任意拉格朗日-欧拉方法对水和空气进行建模的分析显示出与实验数据更好的相关性,因为该公式可以重现作用在机身上的吸力并显着影响排水动力学。

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