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Mountain slope deformations along thrust fronts in jointed limestone: An equivalent continuum modelling approach

机译:节理石灰岩中沿逆冲锋面的山坡变形:一种等效的连续体建模方法

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Engineering-geology studies of natural slope stability have rarely relied on continuum modelling of discontinuous rock mass or the use of conventional constitutive laws in FEM or FDM codes. The paper proposes the use of numerical modelling based on a practical equivalent continuum approach, for analysing the deep-seated gravitational slope deformations (DSGSD) observed in the thrust front area of the Lepini Mountains (Italian Apennines). The DSGSD phenomena affect a carbonate ridge close to the villages of San Sebastiano and Sgurgola, inducing a significant risk. This study began with the construction of engineering-geology sections, by distinguishing lithotechnical units on the basis of both site and geomechanical parameters. Considering geological and geomorphological field evidence, the numerical simulations validated the assumed kinematic model of the slope. These simulations aimed at estimating the instability of the affected rock masses, by identifying a critical mass beyond which ongoing deformations become morphologically evident on the involved slope. A ratio of the weight of a critical mass, which is the minimum mass required to produce some geomorphological evidence to the weight of the mass involved in the gravitational slope deformations, was calculated in order to quantitatively assess the evolutionary stage of the ongoing deformations. The calculated ratio demonstrates a more advanced evolutionary stage for the slope sector near the village of Sgurgola, due to its particular geological setting, than the one near the village of San Sebastiano.
机译:天然边坡稳定性的工程地质研究很少依赖于不连续岩体的连续模型或在FEM或FDM代码中使用常规本构定律。本文提出了基于实用等效连续体方法的数值模型,用于分析在Lepini山(意大利亚平宁山脉)逆冲前缘观测到的深层重力倾斜变形(DSGSD)。 DSGSD现象影响了San Sebastiano和Sgurgola村庄附近的碳酸盐岩脊,造成了重大风险。这项研究从工程地质部分的建设开始,通过根据场地和地质力学参数区分岩石技术单元。考虑到地质和地貌现场证据,数值模拟验证了假设的边坡运动学模型。这些模拟旨在通过确定临界质量来估计受影响岩体的不稳定性,超过该临界质量,在所涉及的边坡上,正在进行的变形在形态上变得明显。计算临界质量的重量比(即产生某些地貌证据所需的最小质量)与重力倾斜变形所涉及的质量的重量之比,以便定量评估正在进行的变形的演化阶段。计算得出的比率显示,由于其特殊的地质环境,Sgurgola村附近的斜坡地区比San Sebastiano村附近的斜坡地区更先进。

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