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Model uncertainty of cylindrical shear method for calculating the uplift capacity of helical anchors in clay

机译:黏土中螺旋锚杆抗拔承载力的圆柱剪切法模型不确定性

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In this paper, the uplift behavior of helical anchors in clay is investigated using the finite element limit analysis. According to the observations on the failure mechanism, the factors that influence the model uncertainty of the cylindrical shear method are examined. The finite element limit analysis is used to remove the correlation between the model factor M for the cylindrical shear method, which is defined as a ratio between the measured capacities Q(u,m) and the capacities Q(u,c) calculated from the cylindrical shear method, with the input parameters. A regression equation f is then proposed. Using the load tests database including 78 laboratory model-scale tests and 25 field full-scale tests, the model factor M ' = Q(u,m)/[fQ(u,c)] is represented as a lognormal random variable with mean = 0.92 and coefficient of variation (cov) = 0.16. Finally, the accuracy of the modified cylindrical shear method (i.e., fQ(u,c)) is examined using 19 large-deformation analyses. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文利用有限元极限分析方法研究了黏土中螺旋形锚杆的抬升特性。根据对破坏机理的观察,研究了影响圆柱剪切法模型不确定性的因素。有限元极限分析用于消除圆柱剪切法的模型因子M之间的相关性,其定义为测得的容量Q(u,m)与从测量值计算出的容量Q(u,c)之比。圆柱剪切法,带有输入参数。然后提出回归方程f。使用包括78个实验室模型规模测试和25个现场全面测试的负载测试数据库,模型因子M'= Q(u,m)/ [fQ(u,c)]表示为对数正态随机变量,均值= 0.92,变异系数(cov)= 0.16。最后,使用19个大变形分析检查了改进的圆柱剪切法(即fQ(u,c))的准确性。 (C)2016 Elsevier B.V.保留所有权利。

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