期刊文献+
共找到14篇文章
< 1 >
每页显示 20 50 100
挡土墙土压力计算美国规范与中国规范对比 被引量:4
1
作者 邵颖 杨振琨 赵丽华 《人民黄河》 CAS 北大核心 2015年第12期99-102,共4页
为了比较中美规范在挡土墙设计中安全和经济因子的异同,首先比较中美挡土墙规范中土压力计算理论的差异,再通过挡土墙算例,分别按两种规范计算主动土压力及抗滑稳定系数。结果表明,美国规范计算土压力的公式相对复杂,土压力计算结果比... 为了比较中美规范在挡土墙设计中安全和经济因子的异同,首先比较中美挡土墙规范中土压力计算理论的差异,再通过挡土墙算例,分别按两种规范计算主动土压力及抗滑稳定系数。结果表明,美国规范计算土压力的公式相对复杂,土压力计算结果比中国规范计算值大。中美两国规范在抗滑稳定安全因子的标准方面相近,土压力的不同使得中国规范在安全的前提下相对经济。 展开更多
关键词 挡土墙土压力 中国规范 美国规范 楔形体理论
下载PDF
膨胀土填料挡土墙土压力问题的讨论 被引量:1
2
作者 马玉静 蒲昌瑜 魏然 《山西建筑》 2006年第6期95-96,共2页
通过一些实验材料,根据膨胀土的物理力学性质,就膨胀土对挡土墙土压力的影响以及计算做了分析,提出了一些减小挡土墙上膨胀土压力的有效措施。
关键词 水平膨胀压力 挡土墙土压力 相对位移 墙体变形
下载PDF
基于三剪统一强度理论的挡土墙土压力计算的水平层分析法 被引量:1
3
作者 王淑红 寸江峰 《西安文理学院学报(自然科学版)》 2018年第2期125-128,共4页
将三剪统一强度理论应用到挡土墙土压力计算的水平层分析法中,并将计算结果与基于Mohr-coulomb强度准则的计算结果进行对比分析,证明了三剪统一强度理论全面考虑三个主剪应力及其面上的正应力对材料强度的影响是非常合理的,其计算结果... 将三剪统一强度理论应用到挡土墙土压力计算的水平层分析法中,并将计算结果与基于Mohr-coulomb强度准则的计算结果进行对比分析,证明了三剪统一强度理论全面考虑三个主剪应力及其面上的正应力对材料强度的影响是非常合理的,其计算结果和实测结果高度吻合. 展开更多
关键词 挡土墙土压力 水平层分析法 三剪统一强度准则
下载PDF
冲击荷载作用下挡土墙上的附加土压力 被引量:4
4
作者 王广月 王登杰 《应用基础与工程科学学报》 EI CSCD 2002年第2期156-161,共6页
根据强夯冲击荷载作用时挡土墙的实际受力状态 ,从静力法的观点出发 ,按照碰撞理论得出的接触应力 ,结合布辛尼斯克 (Boussinesq)解 ,推导并给出了冲击荷载作用时挡土墙上所受土压力的实用计算公式 ,解决了挡土墙后填土实施强夯时的土... 根据强夯冲击荷载作用时挡土墙的实际受力状态 ,从静力法的观点出发 ,按照碰撞理论得出的接触应力 ,结合布辛尼斯克 (Boussinesq)解 ,推导并给出了冲击荷载作用时挡土墙上所受土压力的实用计算公式 ,解决了挡土墙后填土实施强夯时的土压力计算问题 . 展开更多
关键词 冲击荷载 挡土墙 附加压力 强夯 夯锤
下载PDF
挡土墙地震土压力拟静力法第二破裂面判别 被引量:5
5
作者 蒋良潍 姚令侃 《路基工程》 2009年第6期23-25,共3页
基于拟静力法原理和地震角旋转,提出地震工况下挡土墙的陡/坦墙判据及第二破裂面倾角算式。地震工况坦墙临界角更陡,沿用传统坦墙判据易造成误判。对比表明,墙背角处在误判区间时,按误判(陡墙)的物部-冈部公式计算偏于危险,而基于新判... 基于拟静力法原理和地震角旋转,提出地震工况下挡土墙的陡/坦墙判据及第二破裂面倾角算式。地震工况坦墙临界角更陡,沿用传统坦墙判据易造成误判。对比表明,墙背角处在误判区间时,按误判(陡墙)的物部-冈部公式计算偏于危险,而基于新判据及其坦墙模式计算的水平分力更大而竖直分力更小,不仅力学意义更合理,且用以检算偏于安全。 展开更多
关键词 挡土墙地震压力 拟静力法 第二破裂面 地震角 墙背压力偏角
下载PDF
桩基托梁挡土墙的应用 被引量:1
6
作者 胡胜华 《四川建材》 2022年第9期61-62,共2页
桩基托梁挡土墙作为工程防治措施之一,是由挡土墙、托梁以及桩基结合起来的一种支护结构,兼具挡土墙和桩基的优点。
关键词 支护结构 挡土墙土压力 桩基托梁挡土墙
下载PDF
复杂条件下黏性土主动土压力解析解 被引量:12
7
作者 杨剑 《河海大学学报(自然科学版)》 CAS CSCD 北大核心 2012年第4期380-386,共7页
为求得复杂条件下黏性土平面破坏土楔下的主动土压力系数,基于极限平衡理论及Coulomb土压力理论,考虑了挡土墙倾角、填土摩擦角、填土黏聚力、挡土墙背与土界面摩擦角和黏着力、黏性填土表面坡角、黏性土表面裂缝深度对黏性土主动土压... 为求得复杂条件下黏性土平面破坏土楔下的主动土压力系数,基于极限平衡理论及Coulomb土压力理论,考虑了挡土墙倾角、填土摩擦角、填土黏聚力、挡土墙背与土界面摩擦角和黏着力、黏性填土表面坡角、黏性土表面裂缝深度对黏性土主动土压力的影响,通过推导得出了以黏性土质量分量、超载分量、黏聚力分量主动土压力系数所表示的黏性土主动土压力计算公式。在特定条件下,本文解与经典的Rankine和Coulomb土压力理论计算结果一致,有较高精度,且既适用于黏性土,也适用于砂土,可应用于实际工程。 展开更多
关键词 黏性 挡土墙土压力 主动压力 极限平衡理论 Coulomb压力理论
下载PDF
某挡土墙倒塌的事故分析和思考
8
作者 胡斌 《河北理工大学学报(社会科学版)》 2007年第S1期152-155,共4页
若挡土墙设计构造不符合规范要求,设计考虑不周到,容易发生事故。本文分析了某重力式挡土墙倒塌事故的原因,并提出了挡土墙在设计、施工中应注意的问题。
关键词 挡土墙倒塌压力稳定
下载PDF
锚杆挡土墙在下穿高速公路道路拓宽中的运用
9
作者 戴琛 《江苏交通科技》 2012年第6期17-20,共4页
近年来随着城市建设的发展,原有城市道路宽度已经不能满足交通量增加的需求,道路拓宽改造逐渐成为道路改造的主要形式,其中有很多拓宽道路需要下穿高速公路。文章结合工程实例详细地介绍锚杆挡土墙结构优点、使用范围及其受力分析、... 近年来随着城市建设的发展,原有城市道路宽度已经不能满足交通量增加的需求,道路拓宽改造逐渐成为道路改造的主要形式,其中有很多拓宽道路需要下穿高速公路。文章结合工程实例详细地介绍锚杆挡土墙结构优点、使用范围及其受力分析、计算方法,为下穿道路拓宽改造提供参考。 展开更多
关键词 道路工程拓宽改造锚杆挡土墙土压力
原文传递
山区公路滑坡设计研究
10
作者 付飞 《黑龙江交通科技》 2018年第1期38-38,41,共2页
基于目前山区公路工程受滑坡地质灾害影响严重,分析了滑坡产生原因以及滑坡设计应用现状,并提出了滑坡设计优化的技术方法,其目的是为相关建设者提供一些理论依据。
关键词 山区公路工程 滑坡设计 挡土墙土压力
下载PDF
Improved method for determining active earth pressure considering arching effect and actual slip surface 被引量:3
11
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
下载PDF
Comparative study of different theories on active earth pressure 被引量:1
12
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
下载PDF
Pseudo-dynamic active earth pressure behind retaining wall for cohesive soil backfill
13
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
下载PDF
Active earth pressure for subgrade retaining walls in cohesive backfills with tensile strength cut-off subjected to seepage effects
14
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
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部