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Theoretical Analysis of Rockfall Impacts on the Soil Cushion Layer of Protective Structures

机译:落石对防护结构垫层影响的理论分析

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During the Wenchuan Earthquake, with a magnitude of 5.12, collapses and rockfall hazards persisted for a long time after the initial investigations carried out by research fellow S. M. He and his team at the scene of the disaster in October 2008. It is possible that additional incidents of rockfalls in large quantities may continue in the same areas over the next ten to fifteen years. Furthermore, in the vast mountainous region of western China, the topographic relief is evident, and earthquakes occur frequently. Therefore, it is difficult to effectively defend against rockfall hazards. When designing protective structures, the key issue is the analysis of the mechanical response mechanism of the soil cushion layer of the upper cushion when subjected to the impact of rockfall. As such, a theoretical method was used to perform such an analysis. The cavity expansion and energy conservation model were adopted. Analytical solutions for the impact force and penetration depth were then derived. Furthermore, the impact force and penetration depth of rockfall were studied with the LS-DYNA software to obtain values for the impact forces and the penetration depth. Finally, the reliability of the theoretical method was evaluated using the cavity expansion, energy conservation, numerical simulation, Hertz, Japanese, Swiss, Australian, B. S. Guan, tunnel manual, and subgrade methods based on an engineering model. The results show that the cavity expansion and the energy conservation methods yielded consistent results. Meanwhile, the cavity expansion and the energy conservation methods also yielded consistent results with the numerical simulation, Japanese (obtained by laboratory experiment), Swiss (obtained by laboratory experiment), and Australian (obtained by field experiment) methods. The relevant methods and conclusions shall therefore be applied to the design of rockfall protection structure in future investigations.
机译:在汶川地震(5.12级)期间,在由研究员SM He和他的团队在2008年10月灾难现场进行的初步调查之后,坍塌和崩塌灾害持续了很长时间。很可能还会发生其他事件。在接下来的十到十五年中,大量的岩崩可能会在同一地区继续发生。此外,在中国西部广大的山区,地形起伏明显,地震频繁发生。因此,难以有效地防御落石灾害。在设计防护结构时,关键问题是分析落石冲击下上垫层土垫层的力学响应机理。这样,使用理论方法来进行这种分析。采用腔膨胀和节能模型。然后得出了冲击力和穿透深度的解析解。此外,利用LS-DYNA软件研究了落石的冲击力和穿透深度,以获得冲击力和穿透深度的值。最后,使用空腔扩展,节能,数值模拟,Hertz,日语,瑞士,澳大利亚,B.S。Guan,隧道手册以及基于工程模型的路基方法,对理论方法的可靠性进行了评估。结果表明,腔膨胀和节能方法取得了一致的结果。同时,空腔膨胀和节能方法也与数值模拟,日本(通过实验室实验获得),瑞士(通过实验室实验获得)和澳大利亚(通过现场实验获得)方法产生了一致的结果。因此,在今后的研究中,应将有关方法和结论应用于落石防护结构的设计。

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