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考虑开挖扰动和基质吸力影响的基坑边坡安全性研究 被引量:8
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作者 李兆平 张弥 王连俊 《中国安全科学学报》 CAS CSCD 2000年第5期13-17,共5页
在传统的边坡安全性分析中 ,人们都不考虑开挖扰动和基质吸力的影响。笔者通过试验 ,研究了开挖扰动对土体工程性质的影响 ,并且建立了考虑开挖扰动和基质吸力影响的基坑边坡安全性分析模型 ,还给出了计算实例。研究结果表明 ,开挖扰动... 在传统的边坡安全性分析中 ,人们都不考虑开挖扰动和基质吸力的影响。笔者通过试验 ,研究了开挖扰动对土体工程性质的影响 ,并且建立了考虑开挖扰动和基质吸力影响的基坑边坡安全性分析模型 ,还给出了计算实例。研究结果表明 ,开挖扰动和基质吸力对边坡安全系数有较大的影响。 展开更多
关键词 开挖扰动 基质吸力 边坡安全性 土体工程 边坡安全系数
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基于锚索内力增量比指标的边坡安全性预警研究
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作者 陈冠琪 郭昭赢 +3 位作者 张晓温 李剑 郭建华 陈佳鑫 《安全与环境工程》 CAS CSCD 北大核心 2023年第3期145-151,160,共8页
预应力锚索作为主动加固手段,可提高边坡的稳定性。但公路边坡的锚固工程并非永久保障,随着岩土体外部荷载以及内部结构的改变,边坡仍然存在失稳破坏的潜在风险。因此,边坡安全性预警研究对于防灾减灾有着重要意义。以某实际预应力锚索... 预应力锚索作为主动加固手段,可提高边坡的稳定性。但公路边坡的锚固工程并非永久保障,随着岩土体外部荷载以及内部结构的改变,边坡仍然存在失稳破坏的潜在风险。因此,边坡安全性预警研究对于防灾减灾有着重要意义。以某实际预应力锚索加固边坡工程为例,采用数值仿真方式,通过建立边坡稳定性计算模型,得到不同锚索初始预应力下锚索内力增量与边坡岩土体强度折减系数的关系曲线,并将边坡滑动面起始发育和滑动面贯通分别对应的边坡岩土体强度折减系数λ_(1)、λ_(2)对应的点作为边坡安全性预警点,建立以锚索内力增量比作为边坡安全稳定状态的预警指标,提出了基于锚索内力增量比的边坡安全性预警方法和判别标准,该方法消除了锚索初始预应力的影响,便于工程应用,并得到锚索内力增量比在不同阶段的边坡安全性预警阈值与锚索初始预应力呈现出e指数关系,可用公式y=AeBx表示,实际应用中可根据这一关系式实现不同锚索预应力加固边坡安全稳定状态的预警。 展开更多
关键词 边坡安全性预警 预应力锚索 锚索内力增量比 安全系数
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Upper bound analysis of slope stability with nonlinear failure criterion based on strength reduction technique 被引量:25
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作者 赵炼恒 李亮 +2 位作者 杨峰 罗强 刘项 《Journal of Central South University》 SCIE EI CAS 2010年第4期836-844,共9页
Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and it... Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and its corresponding critical failure mechanism by means of the kinematical approach of limit analysis theory. The nonlinear shear strength parameters were treated as variable parameters and a kinematically admissible failure mechanism was considered for calculation schemes. The iterative optimization method was adopted to obtain the safety factors. Case study and comparative analysis show that solutions presented here agree with available predictions when nonlinear criterion reduces to linear criterion, and the validity of present method could be illuminated. From the numerical results, it can also be seen that nonlinear parameter rn, slope foot gradient ,β, height of slope H, slope top gradient a and soil bulk density γ have significant effects on the safety factor of the slope. 展开更多
关键词 nonlinear failure criterion strength reduction method upper-bound theorem of limit analysis slope stability analysis factor of safety
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A new double reduction method for slope stability analysis 被引量:16
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作者 白冰 袁维 李小春 《Journal of Central South University》 SCIE EI CAS 2014年第3期1158-1164,共7页
The core of strength reduction method(SRM) involves finding a critical strength curve that happens to make the slope globally fail and a definition of factor of safety(FOS). A new double reduction method, including a ... The core of strength reduction method(SRM) involves finding a critical strength curve that happens to make the slope globally fail and a definition of factor of safety(FOS). A new double reduction method, including a detailed calculation procedure and a definition of FOS for slope stability was developed based on the understanding of SRM. When constructing the new definition of FOS, efforts were made to make sure that it has concise physical meanings and fully reflects the shear strength of the slope. Two examples, slopes A and B with the slope angles of 63° and 34° respectively, were given to verify the method presented. It is found that, for these two slopes, the FOSs from original strength reduction method are respectively 1.5% and 38% higher than those from double reduction method. It is also found that the double reduction method predicts a deeper potential slide line and a larger slide mass. These results show that on one hand, the double reduction method is comparative to the traditional methods and is reasonable, and on the other hand, the original strength reduction method may overestimate the safety of a slope. The method presented is advised to be considered as an additional option in the practical slope stability evaluations although more useful experience is required. 展开更多
关键词 slope stability strength reduction method double strength reduction method factor of safety limit equilibrium method
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A new hybrid algorithm for global optimization and slope stability evaluation 被引量:3
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作者 Taha Mohd Raihan Khajehzadeh Mohammad Eslami Mahdiyeh 《Journal of Central South University》 SCIE EI CAS 2013年第11期3265-3273,共9页
A new hybrid optimization algorithm was presented by integrating the gravitational search algorithm (GSA) with the sequential quadratic programming (SQP), namely GSA-SQP, for solving global optimization problems a... A new hybrid optimization algorithm was presented by integrating the gravitational search algorithm (GSA) with the sequential quadratic programming (SQP), namely GSA-SQP, for solving global optimization problems and minimization of factor of safety in slope stability analysis. The new algorithm combines the global exploration ability of the GSA to converge rapidly to a near optimum solution. In addition, it uses the accurate local exploitation ability of the SQP to accelerate the search process and find an accurate solution. A set of five well-known benchmark optimization problems was used to validate the performance of the GSA-SQP as a global optimization algorithm and facilitate comparison with the classical GSA. In addition, the effectiveness of the proposed method for slope stability analysis was investigated using three ease studies of slope stability problems from the literature. The factor of safety of earth slopes was evaluated using the Morgenstern-Price method. The numerical experiments demonstrate that the hybrid algorithm converges faster to a significantly more accurate final solution for a variety of benchmark test functions and slope stability problems. 展开更多
关键词 gravitational search algorithm sequential quadratic programming hybrid algorithm global optimization slope stability
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