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Non-dimensional analysis for rock slope plane failure in seismic (pseudostatic) conditions

机译:地震(拟静力)条件下岩石斜坡平面破坏的无量纲分析

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This study examines plane failure analysis of rock slopes and discusses its effect on seismic actions in a non-dimensional form, incorporating external loads transferred by anchors and stability indicators such as the depth of tension cracks and the failure plane dip. The results of limit equilibrium analyses, in terms of attained level of safety, are summarized in stability charts which can be used for design and assessment. Following guidelines established by Eurocode EC7, the stability is assessed through the R/E ratio, i.e. the ratio of the resisting shear forces (R) acting on the sliding surface and those promoting sliding (E). The proposed stability charts can be applied to various common practical situations, in order to provide a preliminary - but quantitative - assessment of the rock slope stability. As an example of an application, the paper focuses on the stability of a rock mass located at the bottom of the southern slope of the Sasso di Pale mountain (Central Italy), at the outskirts of the village of Pale. As many other historical towns in Central Italy, due to their location close to rock masses, this site is particularly exposed to instability phenomena such as plane failure and rock wedge failure. The structural-geological survey allowed us to identify the main joint sets affecting the behavior of the rock mass and, accordingly, we examined the plane failure mechanism involving sliding along a single plane. Stability verifications in pseudostatic conditions have been performed by adopting the proposed charts, consistent with Eurocodes prescriptions.
机译:这项研究检查了岩石边坡的平面破坏分析,并以无量纲形式讨论了其对地震作用的影响,并结合了锚固传递的外部载荷和诸如裂缝的深度和破坏平面倾角等稳定性指标。就达到的安全水平而言,极限平衡分析的结果汇总在稳定性图表中,可用于设计和评估。遵循Eurocode EC7制定的准则,通过R / E比率(即作用在滑动表面上的抗剪力(R)和促进滑动的抗剪力(R)的比率)来评估稳定性。所提出的稳定性图表可以应用于各种常见的实际情况,以提供对岩质边坡稳定性的初步(但定量)评估。作为一个应用示例,本文重点研究了位于帕莱村郊外萨索迪帕莱山(意大利中部)南坡底部的岩体的稳定性。与意大利中部的许多其他历史名镇一样,由于其位置靠近岩体,因此该地点特别容易遭受不稳定现象的影响,例如飞机失灵和岩石楔形破坏。结构地质调查使我们能够确定影响岩体行为的主要节理,因此,我们研究了涉及沿单个平面滑动的平面破坏机制。伪静态条件下的稳定性验证已通过采用拟议的图表进行,符合欧洲规范的规定。

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