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Limit equilibrium based design approach for slope stabilization using multiple rows of drilled shafts

机译:基于极限平衡的设计方法,使用多排钻轴进行边坡稳定

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In this paper, a limiting equilibrium based methodology, incorporating the method of slices and arching effects of the drilled shafts, is developed for optimizing the use of multiple rows of drilled shafts. This proposed method is focusing on the number of rows, the location of each row, the dimension and spacing of the drilled shafts. Three design criteria are used for optimization: target global factor of safety, the con-structability and service limit. A PC-based program called M-UASLOPE has been coded to allow for handling of complex slope geometry, soil profile, and ground water conditions. A design example is presented to illustrate the application of the M-UASLOPE program in the optimized design of multiple rows of drilled shafts for stabilizing the example slope.
机译:在本文中,开发了一种基于极限平衡的方法,结合了钻杆的切片和拱效应的方法,以优化多排钻杆的使用。所提出的方法着眼于排数,每排的位置,钻孔轴的尺寸和间距。优化时使用了三个设计标准:目标安全性,可构造性和服务极限。已经编写了一个基于PC的程序,称为M-UASLOPE,可以处理复杂的斜坡几何形状,土壤剖面和地下水状况。给出了一个设计示例,以说明M-UASLOPE程序在多排钻探井的优化设计中的应用,以稳定示例坡度。

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