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稳定渗流条件下沿河路基挡墙主动土压力分析 被引量:1
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作者 蒋洋 柴贺军 《水运工程》 北大核心 2008年第8期20-24,共5页
分析沿河路基挡墙在不同水力条件下的受力特征,有助于改进沿河路基支挡结构的设计和提高沿河路基的稳定性。对沿河路基挡墙的结构进行简化,将路基地下水的渗流状态简化为稳定渗流状态。就路基排水系统沿墙土界面布置、沿填土底面布置和... 分析沿河路基挡墙在不同水力条件下的受力特征,有助于改进沿河路基支挡结构的设计和提高沿河路基的稳定性。对沿河路基挡墙的结构进行简化,将路基地下水的渗流状态简化为稳定渗流状态。就路基排水系统沿墙土界面布置、沿填土底面布置和路基排水系统完全失效3种情况,阐述了主动土压力的计算方法,并分析了路基排水系统的布置方式对作用于路基挡墙上的土压力的影响。得出结论:确保路基排水系统的有效性对提高沿河路基挡墙的稳定性至关重要;在路基排水系统有效的前提下,排水系统沿填土底面布置比沿墙土界面布置更有利于沿河路基挡墙的稳定。 展开更多
关键词 沿河路基 挡墙主动土压力 稳定渗流场 排水条件
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Improved method for determining active earth pressure considering arching effect and actual slip surface 被引量:3
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作者 HE Zhong-ming LIU Zheng-fu +1 位作者 LIU Xiao-hong BIAN Han-bing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期2032-2042,共11页
To determine the distribution of active earth pressure on retaining walls, a series of model tests with the horizontally translating rigid walls are designed. Particle image velocimetry is used to study the movement a... To determine the distribution of active earth pressure on retaining walls, a series of model tests with the horizontally translating rigid walls are designed. Particle image velocimetry is used to study the movement and shear strain during the active failure of soil with height H and friction angle φ. The test results show that there are 3 stages of soil deformation under retaining wall translation: the initial stage, the expansion stage and the stability stage. The stable sliding surface in the model tests can be considered to be composed of two parts. Within the height range of 0.82 H-1.0 H, it is a plane at an angle of π/4+φ/2 to the horizontal plane. In the height range of 0-0.82 H, it is a curve between a logarithmic spiral and a plane at an angle of π/4+φ/2 to the horizontal. A new method applicable to any sliding surface is proposed for active earth pressure with the consideration of arching effect. The active earth pressure is computed with the actual shape of the slip surface and compared with model test data and with predictions obtained by existing methods. The comparison shows that predictions from the newly proposed method are more consistent with the measured data than the predictions from the other methods. 展开更多
关键词 particle image velocimetry retaining wall soil arching effect active earth pressure
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Comparative study of different theories on active earth pressure 被引量:1
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作者 S.P.Yap F.A.Salman S.M.Shirazi 《Journal of Central South University》 SCIE EI CAS 2012年第10期2933-2939,共7页
Determination of distribution and magnitude of active earth pressure is crucial in retaining wall designs. A number of analytical theories on active earth pressure were presented. Yet, there are limited studies on com... Determination of distribution and magnitude of active earth pressure is crucial in retaining wall designs. A number of analytical theories on active earth pressure were presented. Yet, there are limited studies on comparison between the theories. In this work, comparison between the theories with finite element analysis is done using the PLAXIS software. The comparative results show that in terms of distribution and magnitude of active earth pressure, RANKINE's theory possesses the highest match to the PLAXIS analysis. Parametric studies were also done to study the responses of active earth pressure distribution to varying parameters Increasing soil friction angle and wall friction causes decrease in active earth pressure. In contrast, active earth pressure increases with increasing soil unit weight and height of wall. RANK/NE's theory has the highest compatibility to finite element analysis among all theories, and utilization of this theory leads to proficient retaining wall design. 展开更多
关键词 active earth pressure retaining wall PLAXIS comparative study RANKINE's theory COULOMB's theory
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Pseudo-dynamic active earth pressure behind retaining wall for cohesive soil backfill
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作者 马少俊 王奎华 吴文兵 《Journal of Central South University》 SCIE EI CAS 2012年第11期3298-3304,共7页
A formula was derived for the computation of seismic active earth pressure behind retaining wall using pseudo-dynamic method.This formula considered the actual dynamic effect with variation of time and propagation of ... A formula was derived for the computation of seismic active earth pressure behind retaining wall using pseudo-dynamic method.This formula considered the actual dynamic effect with variation of time and propagation of shear and primary wave velocities through the soil backfills.The influence of tension crack in the top portion of the backfill under seismic loading was investigated.The effects of wall friction angle,soil friction angle,horizontal and vertical seismic coefficients on the seismic active force were also explored.The parametric study shows that the total seismic active force increases as horizontal seismic coefficient increases,while it decreases with the increase in vertical seismic coefficient,internal friction angle and unit cohesion.The seismic active force calculated by the proposed method is larger than that calculated by previous theory. 展开更多
关键词 seismic active earth pressure pseudo-dynamic method tension cracked zone retaining wall
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Active earth pressure for subgrade retaining walls in cohesive backfills with tensile strength cut-off subjected to seepage effects
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作者 FU He-lin WANG Cheng-yang LI Huan 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期2148-2159,共12页
The commonly used Mohr-Coulomb(M-C) failure condition has a limitation that it overestimates the tensile strength of cohesive soils. To overcome this limitation, the tensile strength cut-off was applied where the pred... The commonly used Mohr-Coulomb(M-C) failure condition has a limitation that it overestimates the tensile strength of cohesive soils. To overcome this limitation, the tensile strength cut-off was applied where the predicted tensile strength is reduced or eliminated. This work then presented a kinematical approach to evaluate the active earth pressure on subgrade retaining walls in cohesive backfills with saturated seepage effects. An effective rotational failure mechanism was constructed assuming an associative flow rule. The impact of seepage forces, whose distribution is described by a closed-form solution, was incorporated into the analysis. The thrust of active earth pressure was derived from the energy conservation equation, and an optimization program was then coded to obtain the most critical solution. Several sets of charts were produced to perform a parameter analysis. The results show that taking soil cohesion into account has a distinct beneficial influence on the stability of retaining walls, while seepage forces have an adverse effect. The active earth pressure increases when tensile strength cut-off is considered, and this increment is more noticeable under larger cohesion. 展开更多
关键词 active earth pressure seepage effect subgrade retaining wall tensile strength cut-off
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