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Damage-based long term modelling of a large alpine rock slope

机译:大型高山岩石边坡基于损伤的长期建模

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Alpine rock slopes evolve over long time in changing morpho-climatic settings. In suitable topographic and geomechanical conditions, weakening and increased hydraulic conductivity associated to rock mass damage under gravitational load can result in slow rock slope deformations possibly evolving into fast-moving or catastrophic rockslides. We simulated the long-term evolution of a high-relief alpine slope using a 2D, time-dependent FE numerical model based on static fatigue laws. This simulates slope creep up to tertiary regime explicitly as a function of damage. Model parameters are upscaled from lab to rock mass conditions through a novel approach based on data derived from rock mass characterization. We present a first model test on the rock slope affected by the Spriana rockslide (Central Alps, Italy).We show the ability of damage-based modelling to track long-term evolution from a poorly disturbed rock mass to a mature rockslide system through diffuse and localized damage.
机译:高山岩石坡度在不断变化的形态气候环境中会长期演化。在适当的地形和地质力学条件下,与重力作用下的岩体破坏相关的减弱和增加的水力传导率会导致缓慢的岩质边坡变形,有可能演变为快速移动或灾难性的岩质滑坡。我们使用基于静态疲劳定律的二维,时变有限元数值模型,模拟了高浮雕高山坡的长期演化。这将模拟蠕变爬升至第三纪,并明确地将其作为破坏的函数。通过基于岩质表征数据的新颖方法,可以将模型参数从实验室条件扩展到岩体条件。我们介绍了受Spriana岩石滑坡(意大利中部阿尔卑斯山)影响的岩石边坡的第一个模型试验。 我们展示了基于损伤的建模能够通过扩散和局部损伤来跟踪从扰动不佳的岩体到成熟的岩体滑坡系统的长期演化。

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