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Introducing Meta-models for a More Efficient Hazard Mitigation Strategy with Rockfall Protection Barriers

机译:介绍了岩土防护障碍更有效的危害缓解策略的元模型

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摘要

The paper presents a new approach to assess the effecctiveness of rockfall protection barriers, accounting for the wide variety of impact conditions observed on natural sites. This approach makes use of meta-models, considering a widely used rockfall barrier type and was developed from on FE simulation results. Six input parameters relevant to the block impact conditions have been considered. Two meta-models were developed concerning the barrier capability either of stopping the block or in reducing its kinetic energy. The outcome of the parameters range on the meta-model accuracy has been also investigated. The results of the study reveal that the meta-models are effective in reproducing with accuracy the response of the barrier to any impact conditions, providing a formidable tool to support the design of these structures. Furthermore, allowing to accommodate the effects of the impact conditions on the prediction of the block-barrier interaction, the approach can be successfully used in combination with rockfall trajectory simulation tools to improve rockfall quantitative hazard assessment and optimise rockfall mitigation strategies.
机译:本文提出了一种评估岩土保护障碍的生物的新方法,占在天然网站上观察到的各种影响条件。这种方法利用Meta模型,考虑到广泛使用的岩石屏障类型,并从FE仿真结果开发。已考虑与块影响条件相关的六个输入参数。有关停止块或降低其动能的屏障能力的制定了两个元模型。还研究了参数范围的参数范围已经研究过。该研究的结果表明,元模型在精确恢复屏障对任何冲击条件的响应时有效,提供了一种强大的工具,以支持这些结构的设计。此外,允许适应冲击条件对块屏障相互作用的预测的影响,该方法可以成功地与岩石轨迹仿真工具组合使用,以改善岩石定量危害评估和优化岩石缓解策略。

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