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首页> 外文期刊>Geotechnical and geological engineering >Seismic Bearing Capacity of Strip Footings Located Close to the Crest of Geosynthetic Reinforced Soil Structures
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Seismic Bearing Capacity of Strip Footings Located Close to the Crest of Geosynthetic Reinforced Soil Structures

机译:靠近土工合成材料加筋土结构波峰的条形基础的抗震承载力

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摘要

This paper investigates the performance of geo-reinforced soil structures subjected to loading applied to strip footings positioned close to a slope crest. The kinematic theorem of limit analysis, which is based on the upper bound theory of plasticity, is applied for evaluating the ultimate bearing capacity within the framework of pseudo-static approach to account for earthquake effects. The mechanism considered in this analysis is a logarithmic spiral failure surface, which is assumed to start at the edge of the loaded area far from the slope, consistent with the observed failure mechanisms shown in the experimental tests reported in the literature. A parametric study is then carried out to investigate the influence of various parameters including the geosynthetic configuration, backfill soil friction angle, footing distances from the crest of the slope, slope angles and horizontal seismic coefficients. Attention is paid to the failure mechanism because its maximum depth is the depth at least to which the reinforcements must be placed. Results of the analyses are presented in the form of non-dimensional design charts for practical use. Finally, a simple procedure based on the assessment of earthquake-induced permanent displacements is shown for the design of footing resting on reinforced slopes subjected to earthquake.
机译:本文研究了施加在靠近斜坡的条形基础上的荷载作用下,土工加固土结构的性能。基于可塑性上限理论的极限分析运动定理,用于在拟静力方法框架内评估地震影响的极限承载力。在此分析中考虑的机制是对数螺旋破坏面,假定该破坏面始于远离斜坡的加载区域的边缘,这与文献报道的实验测试中观察到的破坏机制一致。然后进行参数研究,以研究各种参数的影响,包括土工合成材料配置,回填土的摩擦角,距斜坡顶的支脚距离,倾斜角和水平地震系数。注意失效机制,因为其最大深度是至少必须放置钢筋的深度。分析结果以无尺寸设计图的形式呈现,可供实际使用。最后,展示了一种基于地震诱发的永久位移评估的简单程序,用于在地震作用下加筋斜坡上的立足设计。

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