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Impact & Energy Absorption of Road Safety Barriers by Coupled SPH/FEM

机译:SPH / FEM耦合对道路安全屏障的影响和能量吸收

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Road safety barriers are used to minimise the severity of road accidents and protect lives and property. There are several types of barrier in use today. This paper reports the initial phase of research carried out to study the impact response of portable water-filled barrier (PWFB) which has the potential to absorb impact energy and hence provide crash mitigation under low to moderate speeds. Current research on the impact and energy absorption capacity of water-filled road safety barriers is limited due to the complexity of fluid-structure interaction under dynamic impact. In this paper, a novel fluid-structure interaction method is developed based on the cor»qbination of Smooth Particle Hydrodynamics (SPH) and Finite Element Method (FEM). The sloshing phenomenon of water inside a PWFB is investigated to explore the energy absorption capacity of water under dynamic impact. It was found that water plays an important role in energy absorption. The coupling analysis developed in this paper will provide a platform to further the research in optimising the behaviour of the PWFB. The effect of the amount of water on its energy absorption capacity is investigated and the results have practical applications in the design of PWFBs.
机译:道路安全屏障用于最大程度地减少道路事故的严重性并保护生命和财产。今天有几种类型的屏障正在使用。本文报道了为研究便携式充水屏障(PWFB)的撞击响应而进行的研究的初始阶段,该撞击可能吸收撞击能量,从而在低速至中速下提供碰撞缓解功能。由于动态冲击下流固耦合的复杂性,目前对充水道路安全屏障的冲击和能量吸收能力的研究受到限制。本文基于光滑粒子流体动力学(SPH)和有限元方法(FEM)的组合,开发了一种新型的流固耦合方法。研究了PWFB内部水的晃动现象,以探讨动态冲击下水的能量吸收能力。发现水在能量吸收中起重要作用。本文开发的耦合分析将为进一步研究优化PWFB的行为提供一个平台。研究了水量对其能量吸收能力的影响,该结果在PWFB的设计中具有实际应用价值。

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