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Full-Scale Impact Test and Numerical Simulation of a New-Type Resilient Rock-Shed Flexible Buffer Structure

机译:新型弹性摇滚柔性缓冲结构的全尺寸冲击试验与数值模拟

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Rock sheds have been widely used to protect against rockfall. Traditionally, a cushion layer is placed on the top of a rock shed to reduce the impact force and dissipate energy. However, heavy cushion layers lead to high dead loads and increased construction costs. This paper discusses the concept of an impact-resilient flexible buffer structure. On the basis of that concept, it also proposes a buffer structure mainly composed of springs, ring nets, spring rods, and support ropes, which can be used to replace the traditional cushion layer on a shed for rockfall protection. Full-scale impact tests were conducted to study the impact-resilient characteristic of the structure combined with numerical simulation. The dynamic responses of the buffer structure, including force, deformation, and energy dissipation, were analysed in depth. Finally, parametric numerical simulations of 33 models were conducted; the spring stiffness of these models ranged from 300?kN/m to 1500?kN/m; the impact energy ranged from 100?kJ to 2000?kJ. Moreover, simple approaches for estimating the impact force and braking distance of the buffer structure were proposed and verified using measured data obtained from the impact test.
机译:Rock Sheds已被广泛用于防止岩石。传统上,缓冲层放置在岩石棚的顶部,以减少冲击力并耗散能量。然而,重型垫层导致高载荷和增加的施工成本。本文讨论了冲击弹性柔性缓冲结构的概念。在该概念的基础上,它还提出了一种主要由弹簧,环网,弹簧杆和支撑绳组成的缓冲结构,可用于取代棚屋上的传统垫层以进行岩石保护。进行全规模的冲击试验,以研究结构的冲击弹性特性与数值模拟相结合。缓冲结构的动态响应,包括力,变形和能量耗散,深度分析。最后,进行了3​​3种型号的参数数值模拟;这些型号的弹簧刚度范围为300?KN / M至1500?KN / M;冲击能量范围从100?KJ到2000?KJ。此外,提出了估计缓冲结构的冲击力和制动距离的简单方法,并使用从冲击试验中获得的测量数据进行验证。

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