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Fluid-structure interaction by the mixed SPH-FE method with application to aircraft ditching

机译:混合SPH-FE方法与飞机挖掘的流体结构相互作用

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摘要

This paper deals with numerical simulation of fluid-structure interaction as it occurs during aircraft ditching – an emergency condition where an aircraft is forced to land on water. The work is motivated by the requirement for aircraft manufactures to analyze ditching as part of the aircraft certification process requested by airworthiness authorities.The strong interaction of highly non-linear fluid flow phenomena and structural responses requires a coupled solution of this transient problem. Therefore, an approach coupling Smoothed Particle Hydrodynamics and the Finite Element method within the commercial, explicit software Virtual Performance Solutions has been pursued.In this paper, several innovative features are presented, which allow for accurate and efficient solution. Finally, exemplary numerical results are successfully compared to experimental data from a unique test campaign of guided ditching tests at quasi-full scale impact conditions.It may be concluded that through the application of state-of-the-art numerical techniques it has become possible to simulate the coupled fluidstructure interaction as occurring during ditching. Therefore, aircraft manufacturers may significantly benefit from numerical analysis for design and certification purposes.
机译:本文涉及流体结构相互作用的数值模拟,因为它发生在飞机挖掘期间 - 一种紧急情况,飞机被迫降落在水面上。这项工作是通过飞机制造的要求,分析挖掘作为适航机构所要求的飞机认证过程的一部分。高度非线性流体流动现象和结构反应的强烈相互作用需要该瞬态问题的耦合解决方案。因此,已经采用了一种方法耦合平滑粒子流体动力学和商业明确软件虚拟性能解决方案中的有限元方法。在本文中,提出了几种创新功能,允许准确,有效的解决方案。最后,将示例性数值结果与来自准满量程冲击条件的引导挖掘试验的独特测试活动的实验数据成功相比。可以得出结论,通过应用最先进的数值技术,它已经成为可能在挖掘过程中模拟耦合的流体结构相互作用。因此,飞机制造商可能会显着受益于设计和认证目的的数值分析。

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