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A Reliability-Based Approach for the Design of Rockfall Protection Fences

机译:基于可靠性的落石防护网设计方法

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摘要

This paper proposes a method for improving the design of rockfall protection fences and accounting for the variability of loading cases. It is based on a probabilistic reliability analysis and can combine loading cases from rockfall propagation simulations with numerical simulations of the structure response to the block impact. The advantage of such a reliability-based approach is that statistically relevant results can be obtained concerning the fence's efficiency in stopping the block with a limited number of simulations. This method was employed in a study case, involving a low-energy tree-supported fence placed on a forested slope. The trajectory simulations were conducted using Rockyfor3D and the fence was modelled using a three-dimensional discrete element method model. For demonstration purposes, two parameters were considered: block velocity and the block's angle of incidence before impact. The probability of the fence stopping the block was evaluated accounting for the variability of these two parameters separately and together, either considering these variables as non-correlated, or as correlated. The value of this approach is demonstrated in terms of computation cost. In addition, the results revealed the importance of accounting for both these parameters in designing the structure as well as in estimating the residual hazard downslope from the protective structure.
机译:本文提出了一种改进落石防护围栏设计并考虑荷载工况变化性的方法。它基于概率可靠性分析,可以将落石传播模拟中的荷载工况与结构对砌块撞击的响应进行数值模拟相结合。这种基于可靠性的方法的优势在于,可以通过有限数量的模拟获得有关围栏在阻止块体时的效率的统计相关结果。在一个研究案例中采用了该方法,该方法涉及将低能量的树状支撑栅栏放置在林木斜坡上。使用Rockyfor3D进行轨迹模拟,并使用三维离散元方法模型对围栏进行建模。为了演示的目的,考虑了两个参数:块体速度和块体在撞击前的入射角。考虑到这两个参数的不相关性或相关性,分别评估并考虑了这两个参数的可变性,评估了围栏挡住障碍物的可能性。这种方法的价值体现在计算成本方面。此外,结果表明,在设计结构以及估算防护结构的剩余危险性下坡时,考虑这些参数的重要性。

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