Upper Bound of Seismic Active Earth Pressure on Gravity Retaining Wall with Limited Backfill Width

Xiaoliang Miao, Chang-fu Chen, Si-yi Wang
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引用次数: 1

Abstract

The failure mechanisms of backfill with limited width that is subjected to a co-application of earthquake force and surcharge formed by single and double wedges, respectively, were introduced to address the active earth pressure acting on gravity walls. An analytic model that is applicable to general cases of tilt walls with frictional backs and inclined ground surfaces was established by incorporating the quasi-static Mononobe-Okabe method and upper bound limit analysis. The reasonability and effectiveness of this technique were verified and supported by a comparison with results from reported laboratory model tests. A sample case analysis revealed a nonlinear distribution of active earth pressure on a gravity wall with limited backfill width. Coulomb's solution and three other published methods tended to overestimate the earth pressure measured in the laboratory more significantly than the proposed method did when the width of the backfill was reduced to a critical threshold. The superiority of this suggested technique increased with the shrinkage of backfill width. Moreover, the ascending horizon seismic coefficient k and surcharge q mobilized an increasing active thrust on the wall while easing and enlarging the crack angle of the slip surface, respectively.
有限回填宽度重力式挡土墙地震主动土压力上限
针对重力墙的主动土压力问题,介绍了有限宽度充填体在地震力和单楔和双楔堆积荷载共同作用下的破坏机制。结合准静态Mononobe-Okabe方法和上限分析方法,建立了适用于一般情况下具有摩擦背和倾斜地面的倾斜墙的解析模型。通过与已报道的实验室模型试验结果的比较,验证了该技术的合理性和有效性。通过实例分析,揭示了有限回填宽度重力墙主动土压力的非线性分布规律。当回填体宽度减小到临界阈值时,库仑解和其他三种已发表的方法比所提出的方法更倾向于高估实验室测量的土压力。该方法的优越性随着充填体宽度的减小而增大。此外,水平地震系数k和堆载量q的升高分别使滑脱面裂缝角变缓和增大,从而使壁面活动推力增大。
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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