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Method to Identify the Critical Slip Surface of Side Slope via the Deformation Field and Stress Field Calculated through Deformation Modulus Elastoplasticity Strength Reduction Method

机译:通过变形模量弹性塑性强度减少方法计算侧斜率侧斜率临界滑动的方法

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When strength reduction method is used for side slope analysis, only the intensive parameters are reduced and deformation parameters are not. The ideal elastoplastic model is adopted, and the safety factor is basically in agreement with that of the traditional limit equilibrium method. Main result is the safety factor of side slope, but non-linearity of soil is not considered actually during calculation, so it's hard to arrive at a real deformation field. Based on the deformation modulus elastoplasticity strength reduction method, research of this paper can achieve a more truthful deformation field. Considering the deficiencies in the current slip surface search techniques, this paper mainly studies how to determine the slip surface directly through the slope deformation field and stress field based on the analysis to their characteristics and the formation mechanism and characteristics of slip surface. Three methods to determine the slip surface are worked out: One is to use displacement gradient to identify the most disadvantageous slip surface; The second one is to determine the slip surface using the characteristics of FLAC calculation method and the characteristic that nodal velocity at non-slip area is near to zero and nodal velocity at slip area is very great; The last one is to use the deviation survey method in slope monitoring to track the nodal displacement in numerical analysis, and take the points with displacement catastrophe as those on the slip surface, and link those points to form a curve and finally get the critical slip surface. Analysis is made to the slip surface of clay slope with weak layer. Position of slip surface determined through these three methods is basically the same. Compared with traditional critical equilibrium method, these three methods can not only be applied to homogeneous side slope, but also be used to determine the slip surface of heterogeneous side slope. This paper makes a research on expansion of the application field of deformation modulus elastoplasticity strength reduction method.
机译:当强度减小方法用于侧倾分析时,只有强化参数减小并且变形参数不是。采用了理想的弹塑性模型,安全因子基本上与传统极限平衡方法一致。主要结果是侧倾的安全系数,但实际上在计算过程中,土壤的非线性不会被认为,因此很难到达真正的变形领域。基于变形模量弹塑性强度降低方法,本文的研究可以实现更真实的变形场。考虑到当前滑动表面搜索技术中的缺陷,本文主要研究如何通过倾斜变形场和应力场直接通过分析和变形机构和滑动表面的形成机制和特性来确定滑动表面。三种确定滑动表面的方法进行了制定:一个是使用位移梯度来识别最不利的滑动表面;第二个是使用FLAC计算方法的特征来确定滑动表面和防滑面积的节点速度接近零的特性,滑动区域的节点速度非常大;最后一个是用的偏差调查方法在边坡监测跟踪数值分析的节点位移,并采取点与位移灾难那些滑动表面上,并连接这些点,形成曲线,最终得到了关键的滑表面。用弱层对粘土坡的滑动表面进行分析。通过这三种方法确定的滑动表面的位置基本相同。与传统的临界平衡方法相比,这三种方法不仅可以应用于均匀的侧倾,还可以用于确定异构侧斜面的滑动表面。本文对变形模量弹塑性强度减少方法的膨胀率进行了研究。

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