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首页> 外文期刊>American journal of engineering and applied sciences >Earthquake Resistant Design of Reinforced Soil Structures Using Pseudo Static Method | Science Publications
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Earthquake Resistant Design of Reinforced Soil Structures Using Pseudo Static Method | Science Publications

机译:拟静力法对加筋土结构的抗震设计科学出版物

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> Problem statement: This study presented a method to evaluate the internal stability of reinforced soil structures against tension and pullout modes of failure using pseudo-static method for earthquake conditions. Approach: Using limit equilibrium method and assuming the failure surface to be logarithmic spiral, analysis was conducted to maintain internal stability against both tensile and pullout failure of the reinforcements. For the seismic conditions, factors of safety of all the geosynthetic layers in relation to tension and pullout failure modes were determined for different magnitudes of friction angle of backfill, horizontal seismic accelerations and surcharge load acting on the wall. Results: The efforts had been made to obtain the number of layers, pullout length and total length of the reinforcement at each layer level for the desired safety level against tension and pullout modes of failure. The influence of friction angle of the backfill, horizontal earthquake acceleration and surcharge load on number of layers, pullout length and total length of the reinforcement needed for the stability at each level was discussed. Conclusion/Recommendations: The developed method provided a closed form solution for the active earth pressure acting on the reinforced soil structures using rotational log-spiral failure mechanism under earthquake loading ensuring safety against tension and pullout modes of failure.
机译: > 问题陈述:本研究提出了一种使用伪静态方法评估地震条件下加筋土结构抗张拉模式的内部稳定性的方法。 方法:使用极限平衡法并假设破坏面为对数螺旋,进行分析以保持内部稳定性,以抵抗钢筋的拉伸破坏和拉拔破坏。对于地震条件,针对回填的摩擦角,水平地震加速度和作用在墙体上的附加载荷的大小不同,确定了与拉伸和拉拔破坏模式有关的所有土工合成层的安全系数。 结果:已进行了努力,以获取针对每个层级的钢筋的层数,拔出长度和总长度,以获得所需的抗拉和拔出破坏模式的安全水平。讨论了回填的摩擦角,水平地震加速度和附加载荷对层数,拉拔长度和各个级别稳定所需的钢筋总长度的影响。 结论/建议:该方法为地震作用下的旋转对数-螺旋破坏机制,提供了作用于加筋土结构上的主动土压力的封闭形式解决方案,从而确保了抗拉和破坏模式的安全性。

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