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A Semi-empirical Shear Strength Model for Infilled Rock Fractures with Infills in an Unsaturated State

机译:非饱和状态下充填岩体裂缝的半经验抗剪强度模型

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Based on the results of recent studies, comprehensive characterization of the behavior of infilled rock fractures under saturated and unsaturated conditions requires knowledge of morphological details of fracture surface, as well as state of stress of infill materials and their initial innate conditions (e.g., void ratio, water content, degree of saturation and dry density). This paper describes a semi-empirical equation to interpret the effects of wall-roughed nature of the fractures and presence of partially saturated fine materials within the fractures on the behavior of infilled rock fractures during shear. The proposed equation incorporates the soil-water retention curve parameters as well as hardening due to changes in either volume or degree of saturation into existing models originally developed for fractures with saturated infills. The literature data is also used to evaluate the reliability of the proposed equation in predicting the shear strength of infilled rock fractures in unsaturated conditions.
机译:根据最近的研究结果,饱和和非饱和条件下充填岩石裂缝的综合表征需要了解裂缝表面的形态学细节,以及充填材料的应力状态及其初始固有条件(例如空隙率) ,含水量,饱和度和干密度)。本文描述了一个半经验方程,以解释裂缝的壁面粗糙性质以及裂缝内部分饱和细料的存在对剪切过程中填充岩石裂缝行为的影响。所提出的方程式将土壤保水曲线参数以及由于体积或饱和度的变化而引起的硬化纳入了最初为饱和填充物裂缝开发的现有模型中。文献数据还用于评估所提出方程在预测非饱和条件下充填岩石裂缝的抗剪强度时的可靠性。

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