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首页> 外文期刊>Canadian Geotechnical Journal >Ultimate seismic bearing capacities and failure mechanisms for strip footings placed adjacent to slopes
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Ultimate seismic bearing capacities and failure mechanisms for strip footings placed adjacent to slopes

机译:斜坡邻近放置的条带基础的最终地震承载力和故障机制

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摘要

Assessment of the ultimate bearing capacity of foundations adjacent to slopes is complex as it is highly dependent on the slope geometry and soil properties. Seismic loading may impact both the critical failure mechanism and its associated bearing capacity. The existing approaches for analyzing the seismic bearing capacity of footings near slopes typically employ coefficients developed to fit the conventions of Terzaghi's bearing capacity equation, herein referred to as the "superposition method." In this study, a rigorous assessment of the seismic bearing capacity is performed using an upper-bound limit state plasticity framework known as discontinuity layout optimization (DLO), which makes few prior assumptions concerning the failure geometry. Results show that soil properties, slope configuration, and pseudostatic seismic loading all influence the realized failure mechanism and associated bearing capacity. The use of bearing capacity coefficients that fit within the conventional superposition method may underestimate limit loads when the underlying soil provides a relative increase in resistance, but may greatly overestimate bearing capacity when the self-weight of the soil is destabilizing in nature. A set of design charts using direct computational methods for a variety of geometric, geotechnical, and seismic conditions is provided.
机译:评估与斜坡相邻的基础的最终承载能力是复杂的,因为它高度依赖于坡度几何形状和土壤性质。地震载荷可能会影响临界故障机制及其相关的承载力。现有的分析斜坡附近的地震承载能力的方法通常采用开发的系数以适应泰国胎的轴承能力方程的惯例,在此称为“叠加方法”。在这项研究中,使用称为不连续布局优化(DLO)的上限限制状态可塑性框架进行严格评估地震承载力,这少于有关故障几何的现有假设很少。结果表明,土壤性质,斜坡配置和假性地震荷载全部影响实现的故障机制和相关承载力。使用轴承能量系数在常规的叠加方法内的使用可能低估当下面的土壤提供相对增加的抗性时的极限载荷,但是当土壤的自重稳定本质上的自我稳定时可能大大高估承载力。提供了一组使用用于各种几何,岩土和地震条件的直接计算方法的设计图表。

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