Sliding Stability of Retaining Wall Supporting c-Φ Backfill under Pseudo-Statically Seismic Active Load

IF 0.5 Q4 ENGINEERING, GEOLOGICAL International Journal of Geotechnical Earthquake Engineering Pub Date : 2013-01-01 DOI:10.4018/JGEE.2013010101
Sima Ghosh
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Abstract

The sliding stability of retaining wall is one of the four important stability criteria for the safe design of retaining wall. Here an attempt is made to determine the sliding stability of retaining wall under seismic loading condition supporting c- F backfill considering both soil and wall inertia using pseudo-static method. The analysis for seismic active earth pressure for that particular study is done in such a way to develop a single critical wedge surface which is more realistic. The effect of wide range of variation of parameters like angle of internal friction of soil, angle of wall friction, cohesion, adhesion, seismic acceleration are studied on normalized seismic active earth pressure variation, wall inertia factor, thrust factor, combined dynamic factor and dynamic factor of safety against sliding. Results are presented in terms of formula for critical wedge surface and seismic active earth pressure and non-dimensional charts for the variation of different factors. Finally, a failure zone against sliding is recommended in the Factor of safety against sliding charts.
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拟静力地震主动荷载作用下挡土墙支撑c-Î充填体的滑动稳定性
挡土墙的滑动稳定性是挡土墙安全设计的四个重要稳定性准则之一。本文尝试用拟静力法确定地震荷载条件下,同时考虑土惯量和墙惯量的挡土墙的滑动稳定性。该研究的地震活动土压力分析是采用这样一种方法进行的,即建立一个更现实的单一临界楔面。研究了土体内摩擦角、墙体摩擦角、黏聚力、黏附力、地震加速度等参数大范围变化对归一化地震主动土压力变化、墙体惯性系数、推力系数、组合动力系数和抗滑安全动力系数的影响。给出了临界楔面和地震活动土压力的计算公式和各因素的无量纲变化图。最后,在防滑动海图安全系数中推荐了一个防滑动失效区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.90
自引率
25.00%
发文量
11
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