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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Dynamic active earth pressure on retaining structures
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Dynamic active earth pressure on retaining structures

机译:挡土结构上的动态主动土压力

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摘要

Earth-retaining structures constitute an important topic of research in civil engineering, more so under earthquake conditions. For the analysis and design of retaining walls in earthquake-prone zones, accurate estimation of dynamic earth pressures is very important. Conventional methods either use pseudo-static approaches of analysis even for dynamic cases or a simple single-degree of freedom model for the retaining wall-soil system. In this paper, a simplified two-degree of freedom mass-spring-dashpot (2-DOF) dynamic model has been proposed to estimate the active earth pressure at the back of the retaining walls for translation modes of wall movement under seismic conditions. The horizontal zone of influence on dynamic earth force on the wall is estimated. Results in terms of displacement, velocity and acceleration-time history are presented for some typical cases, which show the final movement of the wall in terms of wall height, which is required for the design. The non-dimensional design chart proposed in the present study can be used to compute the total dynamic earth force on the wall under different input ground motion and backfill conditions. Finally, the results obtained have been compared with those of the available Scott model and the merits of the present results have been discussed.
机译:挡土结构是土木工程研究的重要课题,在地震条件下更是如此。对于地震多发地区挡土墙的分析和设计,准确估算动态土压力非常重要。常规方法甚至对于动态情况也使用伪静态分析方法,或者对挡土墙系统使用简单的单自由度模型。本文提出了一种简化的两自由度质量-弹簧-阻尼器(2-DOF)动力学模型,以估计在地震条件下墙体运动的平移方式下,挡土墙背面的有效土压力。估计了对墙体上动态土力影响的水平区域。给出了一些典型情况下的位移,速度和加速时间历史的结果,这些结果根据设计所需的壁高显示了壁的最终运动。本研究提出的无量纲设计图可用于计算在不同输入地面运动和回填条件下墙体上的总动态土力。最后,将获得的结果与可用的Scott模型的结果进行了比较,并讨论了本结果的优点。

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