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边坡稳定性分析的斜条分法 被引量:4
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作者 邓东平 李亮 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第8期3351-3362,共12页
在考虑坡面荷载、地震作用、渗流、坡顶张裂缝及加固措施等一般情况下,对斜条分进行受力分析,得到严格的安全系数统一计算公式,并在分析斜条分与竖直条分条间力关系的基础上,建立基于传统M-P法下的斜条条间力假设。当采用特定参数的滑... 在考虑坡面荷载、地震作用、渗流、坡顶张裂缝及加固措施等一般情况下,对斜条分进行受力分析,得到严格的安全系数统一计算公式,并在分析斜条分与竖直条分条间力关系的基础上,建立基于传统M-P法下的斜条条间力假设。当采用特定参数的滑动面时,研究本文斜条条间力假设的合理性和不同斜条倾角下安全系数的计算变化与收敛情况,并分析传统M-P法和Sarma法条间力假设在斜条分中的适用性。然后,在均质边坡、地震作用边坡、具有张裂缝临河边坡、倾斜分层边坡和锚索加固边坡算例中对本文斜条条间力假设进行验证。研究结果表明:传统M-P法和Sarma法条间力假设在斜条分中存在一定的局限性,而本文斜条条间力假设在斜条分中是可行性的,计算得的安全系数稳定且收敛快;随斜条倾角的增大,从滑动面滑出点开始向上条间剪切力方向出现反向,这是影响传统M-P法和Sarma法条间力假设出现偏差的主要因素;各算例表明在本文斜条条间力假设下计算得的结果与以往研究成果接近,验证了本文斜条条间力假设的合理性,因而可为边坡稳定性斜条分法提供参考。 展开更多
关键词 边坡工程 稳定性 安全系数 间力假设
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膨胀土径向条分法边坡稳定性研究
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作者 张升升 张波 +1 位作者 蔡强 沈火明 《路基工程》 2022年第5期20-25,共6页
以Bishop条分假设为出发点,基于Mohr-Coulomb塑性本构关系,建立直角坐标下膨胀土边坡稳定性计算模型。基于滑面为圆弧的假设,计算所有潜在滑面相应的安全系数,以此获得了最小安全系数,进而确定了最危险滑面半径及圆心位置。然后,依据Bis... 以Bishop条分假设为出发点,基于Mohr-Coulomb塑性本构关系,建立直角坐标下膨胀土边坡稳定性计算模型。基于滑面为圆弧的假设,计算所有潜在滑面相应的安全系数,以此获得了最小安全系数,进而确定了最危险滑面半径及圆心位置。然后,依据Bishop法所得的最危险滑面半径和圆心坐标,推导极坐标下最危险滑面方程。结合能量守恒思想,引入径向条分法对圆弧面进行划分,基于虚位移原理分析了坡体重力势能以及滑面摩擦力、黏聚力、膨胀力产生的耗散功,据此确定径向条分能量法下膨胀土边坡安全系数。最后,通过算例与传统Bishop条分法进行对比,发现两者所预测的边坡稳定性系数随膨胀力的变化趋势一致,并通过有限元方法进行了对比验证;径向条分能量法有望为膨胀土边坡稳定性分析提供数据积累和方法依据。 展开更多
关键词 bishop条分假设 MOHR-COULOMB 塑性模型 径向 能量法 最小安全系数
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Limit equilibrium method for slope stability based on assumed stress on slip surface 被引量:2
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作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2972-2983,共12页
In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-... In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-C) strength criterion and the initial normal stress without considering the inter-slice(or inter-column) forces, the normal and shear stresses on the slip surface are assumed using some dimensionless variables, and these variables have the same numbers with the force and moment equilibrium equations of a sliding body to establish easily the linear equation groups for solving them. After these variables are determined, the normal stresses, shear stresses, and slope safety factor are also obtained using the stresses assumptions and M-C strength criterion. In the case of a three-dimensional slope stability analysis, three calculation methods, namely, a non-strict method, quasi-strict method, and strict method, can be obtained by satisfying different force and moment equilibrium conditions. Results of the comparison in the classic two- and three-dimensional slope examples show that the slope safety factors calculated using the current method and the other limit equilibrium methods are approximately equal to each other, indicating the feasibility of the current method; further, the following conclusions are obtained: 1) The current method better amends the initial normal and shear stresses acting on the slip surface, and has the identical results with using simplified Bishop method, Spencer method, and Morgenstern-Price(M-P) method; however, the stress curve of the current method is smoother than that obtained using the three abovementioned methods. 2) The current method is suitable for analyzing the two- and three-dimensional slope stability. 3) In the three-dimensional asymmetric sliding body, the non-strict method yields safer solutions, and the results of the quasi-strict method are relatively reasonable and close to those of the strict method, indicating that the quasi-strict method can be used to obtain a reliable slope safety factor. 展开更多
关键词 two-dimensional slope three-dimensional slope limit equilibrium analysis normal stress shear stress safety factor
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