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A new discrete element model for simulating a flexible ring net barrier under rockfall impact comparing with large-scale physical model test data

机译:一种新的离散元模型,用于模拟落石冲击下的柔性环网屏障,并与大规模物理模型测试数据进行比较

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Flexible barriers are one of the effective mitigation measures to intercept high-energy falling rocks in mountainous areas, owing to its high ductility and excellent energy dissipation performance. This paper presents a newly developed flexible ring net barrier model based on the discrete element method (DEM) to simulate the rockfall impact on a flexible barrier. All the input mechanical parameters were calibrated by means of laboratory tests. The capabilities of the numerical model are evaluated by comparing the results from novel designed large-scale physical model impact tests. It is found that the new discrete element model is able to reproduce the behavior of a ring net barrier under rockfall impact. A good agreement with experimental data can be found regarding to boulder velocities, net elongations and tensile forces developed between ring net elements. In addition, the effects of boulder size, impact position, barrier inclination, and barrier initial slack on barrier response in a parametric study are investigated. The results from this study provide useful guidance for future design and optimization of rockfall barriers in engineering practice.
机译:柔性壁障具有很高的延展性和出色的能量消散性能,是拦截山区高能落石的有效缓解措施之一。本文提出了一种基于离散元方法(DEM)的新开发的柔性环网屏障模型,以模拟落石对柔性屏障的影响。所有输入的机械参数均通过实验室测试进行校准。通过比较新颖设计的大规模物理模型冲击测试的结果,评估了数值模型的功能。发现新的离散元模型能够再现落石冲击下环网屏障的行为。关于圆石网元之间的大石速度,净伸长率和拉力,可以找到与实验数据的良好一致性。此外,在参数研究中,还研究了巨石尺寸,撞击位置,障碍物倾斜度和障碍物初始松弛对障碍物响应的影响。这项研究的结果为将来在工程实践中设计和优化崩塌障碍提供了有用的指导。

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