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Numerical simulation of responses of flexible rockfall barriers under impact loading at different positions

机译:不同位置冲击加载下柔性岩壁障碍响应的数值模拟

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Flexible rockfall barriers have been widely used to mitigate rockfalls and protect residential buildings, railroads and highways from such natural hazard. Evaluation of the performance of flexible rockfall barriers are conventionally conducted using the full-scale impact tests in accordance with European guideline ETAG 027, in which the impact position is specified at the centre of the middle functional module. However, the trajectory of a rockfall in real case is random such that the impact position is unknown. The influence of different impact locations has not been reported in literature. In this paper, a full-scale test on a typical flexible barrier system is carried out and then used to calibrate an advanced three-dimensional finite element model, which is proposed for parametric study for the investigation of dynamic response of a typical flexible rockfall barrier under impacts at different positions. The numerical results show that the impact location will influence the residual height and maximum elongation of the flexible barrier. Although the impact position slightly affects the peak forces of support ropes, it will significantly influence the peak forces of the upslope anchor ropes and lead to unsafe anchor design. The proposed model can accurately predict the behaviour of flexible barriers and help designers to consider more practical conditions which are not spedfied in ETAG 027. (C) 2020 Elsevier Ltd. All rights reserved.
机译:灵活的岩壁障碍已被广泛用于减轻岩石,保护住宅建筑,从这种自然危害中保护住宅建筑物,铁路和高速公路。柔性岩壁屏障性能的评估通常使用根据欧洲指南ETAG 027的全尺度冲击试验进行,其中冲击位置在中间功能模块的中心指定。然而,实际情况下岩石的轨迹是随机的,使得冲击位置未知。在文献中尚未报告不同影响位置的影响。在本文中,进行了在典型的柔性屏障系统上进行全尺度测试,然后用于校准先进的三维有限元模型,该模型提出用于调查典型柔性岩壁屏障的动态响应的参数研究在不同位置的影响下。数值结果表明,冲击位置将影响柔性屏障的剩余高度和最大伸长率。尽管冲击位置略微影响支撑绳索的峰值,但它会显着影响上升锚绳的峰值力并导致不安全的锚固设计。拟议的模型可以准确地预测灵活障碍的行为,并帮助设计师考虑在Etag 027中没有Spedfied的更实用的条件。(c)2020 Elsevier Ltd.保留所有权利。

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