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A Further Study on Soil Slope Stability Analysis by Finite Element Slip Surface Stress Method

机译:有限元滑动表面应力法进一步研究土壤边坡稳定性分析

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In this paper, it proves that the necessary and sufficient condition for the potential sliding body reaching the ultimate limit equilibrium state is that the summation of shear stresses along the sliding surface equals to that of resistant shear strength. Based on the rigorous theory analyses and derivations, it is clearly shown that the definition of factor of safety (FOS) in the slip surface stress method (SSSM) is irrelevant with the shape of slip surface. Thus, the authors demonstrate that the FOS of noncircular slip surface can also be defined as the ratio of the sum of resistant sliding force along slip surface to that of sliding force. Furthermore, the physical meaning of the FOS in the SSSM, which can be taken as the average evaluation of the strength reduction coefficient that makes the sliding body reach the ultimate limit equilibrium state along the slip surface in nature, is formulated on the basis of strength reserving theory rather than the overloading theory like that in the Limit Equilibrium Method (LEM) and the Shear Strength Reduction Method (SSRM). Finally, the factors of safety (FOS) and the locations of critical failure surfaces obtained by the SSSM, LEM and SSRM are compared for various geotechnical practices. It is found that the SSSM can achieve precise and reasonable stability assessments for the soil slopes on the basis of actual stress field. Consequently, compared with the LEM and SSRM, the SSSM is demonstrated to be effective and efficient alternative approach for routine analysis and design in geotechnical engineering practice with a high level of confidence.
机译:在本文中,它证明了对于潜在的滑动体达到极限平衡状态的的充分必要条件是,剪切应力的沿着滑动表面的总和等于该耐剪切强度。基于所述严格理论分析和推导,它清楚地示出(FOS)在滑动表面应力的方法(SSSM)安全系数的定义是无关的与滑动面的形状。因此,作者证明了非圆形滑动面的FOS也可被定义为耐滑动力沿着滑动面的总和的至滑动力的比率。此外,在SSSM的FOS,这可作为强度降低系数,使滑动体达到沿在本质上滑动面的极限平衡状态的平均评估的物理意义,被配制强度的基础上保留的理论,而不是超载理论一样,在极限平衡法(LEM)和强度折减法(SSRM)。最后,安全性(FOS)和由SSSM,LEM和SSRM获得临界破坏面的位置因素关于各种土工做法相比较。据发现,SSSM可以达到实际应力场的基础上,土坡精确合理的稳定性评估。因此,在与LEM和SSRM相比,SSSM被证明是具有高置信水平的常规分析和设计在岩土工程实践有效和高效的替代方法。

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