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Simulating bird strikes using smoothed particle hydrodynamics for improved aircraft safety

机译:使用平滑粒子流体动力学模拟鸟类撞击以提高飞机安全性

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Impacts between birds and aircraft, referred to as bird strikes, are remarkably common and present a major issue with flight safety as a single incident can cause catastrophic damage. The Federal Aviation Administration requires that aircraft must withstand these impacts through testing using euthanized birds. This process is unethical, inefficient, costly and unreliable. Previous research has validated gelatin as a replacement material and hydrodynamic modeling as a computational approach. A great variation in results remains due to a lack of standardization in the experimental and computational testing methodologies. Authorities agree that a standard approach will better facilitate testing and reduce the threat that bird strikes pose. We hypothesized that further testing of gelatin substitutes and numerical approaches using advanced processing would facilitate impactful results and aid in introducing a new global bird strike testing standard. High-speed impacts on a Hopkinson bar and dynamic impacts using a pendulum serve to identify a valid setup and design that best represents impact behavior. Smoothed particle hydrodynamics (SPH) is used to create a numerical model representing the fluid nature of the collision. By performing various impacts through various techniques, we hypothesize that the numerical SPH model will validate the material behavior by yielding accurate force-time profiles. Implementing this model will allow for reliable prediction of material response and damage evolution following bird strike impacts.
机译:鸟类与飞机之间的撞击非常普遍,这称为鸟类撞击,是飞行安全的主要问题,因为单个事故可能会造成灾难性的损害。美国联邦航空管理局(Federal Aviation Administration)要求飞机必须通过使用安乐死鸟进行测试来承受这些冲击。此过程不道德,效率低下,成本高昂且不可靠。先前的研究已经证实明胶可以作为替代材料,并且可以将流体力学建模作为一种计算方法。由于缺乏实验和计算测试方法的标准化,结果仍然存在很大差异。当局一致认为,一种标准方法将更好地促进测试并减少鸟击造成的威胁。我们假设使用高级处理方法对明胶替代品和数值方法进行进一步测试将有助于产生有意义的结果,并有助于引入新的全球鸟类打击测试标准。霍普金森杆上的高速冲击和使用摆锤的动态冲击可识别出最能代表冲击行为的有效设置和设计。平滑粒子流体动力学(SPH)用于创建表示碰撞的流体性质的数值模型。通过使用各种技术执行各种影响,我们假设数值SPH模型将通过产生准确的作用力-时间曲线来验证材料的行为。实施此模型将可以可靠地预测鸟类撞击后材料响应和损伤演变。

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