土工基础 ›› 2022, Vol. 36 ›› Issue (4): 612-616.

• 专题论述 • 上一篇    下一篇

抗剪强度指标对边坡稳定分析结果的影响

康靖宇   

  1. (中船第九设计研究院工程有限公司,上海 200082)
  • 收稿日期:2022-01-25 修回日期:2022-01-28 出版日期:2022-08-30 发布日期:2022-08-25
  • 作者简介:康靖宇(1994-),男,工程师,研究方向为岩土工程。

Influence of Shear Strength Parameters on the Slope Stability Analysis Results

KANG Jingyu   

  • Received:2022-01-25 Revised:2022-01-28 Online:2022-08-30 Published:2022-08-25

摘要: 根据选取的抗剪强度指标的不同,边坡稳定分析方法分为总应力法与有效应力法两种。在工程中,由于孔隙水压力常常未知或者难以求得,总应力法使用得更为广泛。在使用总应力法时,常因混淆土体真实抗剪强度τf与抗剪强度指标cu致使边坡稳定分析结果偏大。针对上述问题,以整体圆弧滑动分析法为例,通过理论推导给出了采用总应力法时破坏面上真实抗剪强度τf与不排水抗剪强度指标以及有效内摩擦角φ′与内摩擦角φ之间的关系,从理论上阐释了采用有效应力法与总应力法得到不同安全系数的根本原因,并提出了在坡内孔压未知或难以获得时正确计算边坡稳定安全系数的方法。同时,基于Matlab软件进行了算例验证。

关键词: 边坡稳定分析, Matlab, 不排水强度, 总应力法, 有效应力法

Abstract: The slope stability analysis methods can be divided into two parts: the total strength method and the effective strength method according to the different shear strength parameters selected. Since the pore water pressure is often unknown or difficult to obtain in the engineering practice, the total strength method is therefore widely used. When the total strength method is used, the result of the slope stability analysis is often erroneous due to the confusing in the actual shear strength and shear strength parameters of the soil. This paper utilizes the circular arc sliding method as an example to illustrate the relationship between the shear strength and the undrained strength of the potential sliding surface and the effective internal friction angle and the total internal friction angle. The basic reason for the difference between the effective strength method and the total strength method in the safety factor is proposed. Basic on this, a method for correctly evaluating the factor of safety of the slope stability is proposed when the pore pressure is unknown or difficult to obtain in an actual slope. At the same time, the slope stability analysis method proposed in this paper is verified by an example by using MATLAB software.


Key words: Slope Stability Analysis, MATLAB, Undrained Shear Strength, Total Strength Method, Effective Strength Method

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