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Numerical and experimental investigation of the shock and steady state pressures in the bird material during bird strike

机译:鸟类撞击时鸟类材料中的冲击压力和稳态压力的数值和实验研究

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The impact of a bird on a structure can, in the first place, be characterized by the pressure exerted on that structure. In bird strike research, the first step towards bird strike modelling is therefore often the investigation of these impact pressures. During impact, two subsequent regimes can be distinguished: a shock and steady state regime. These regimes are characterized by an initially very high shock pressure and a much lower steady state pressure. How relevant the shock regime is during bird strike however can still be questioned. This paper will reveal some key parameters that influence the shock regime, based on the conclusions of several SPH simulations and an experimental test campaign. A zoom on the numerically obtained shock pressure pulse is made, which shows that the impact pressure and duration correspond very well with the theory. Slight tilting of the projectile however can increase the pressure up to 190% of the analytical value. The elastic energy as a measure for the presence of the shock regime is introduced. This shows that the shock regime is relatively negligible for hemispherical ends. The steady state pressures obtained from the simulations are investigated and finally, the analytical values and numerical results are compared to a series of experimental impact pressure measurements with real and (porous) gelatine birds. (C) 2017 Elsevier Ltd. All rights reserved
机译:首先,鸟类对建筑物的影响可以通过施加在该建筑物上的压力来表征。因此,在鸟击研究中,迈向鸟击建模的第一步通常是研究这些冲击压力。在撞击期间,可以区分两个随后的状态:冲击状态和稳态状态。这些状态的特征是最初的冲击压力很高,而稳态压力要低得多。然而,在鸟类罢工期间,休克制度的相关性仍然值得怀疑。本文将根据一些SPH模拟的结论和一个实验性测试活动,揭示影响冲击状态的一些关键参数。对通过数值获得的冲击压力脉冲进行缩放,这表明冲击压力和持续时间与理论非常吻合。但是,弹丸的轻微倾斜会增加压力,使其达到分析值的190%。引入了弹性能作为衡量震动状态的一种手段。这表明,对于半球形端部,冲击状态相对可以忽略不计。研究了从仿真中获得的稳态压力,最后,将分析值和数值结果与一系列对真实和(多孔)明胶禽的实验冲击压力测量值进行了比较。 (C)2017 Elsevier Ltd.保留所有权利

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