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On the displacement of a traditional retaining wall when first loaded

机译:初次加载时传统挡土墙的位移

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When the dimensions of the base of a retaining wall have been selected by, for example, some form of limit state analysis (Butterfield, 2012) an assessment ought also to be made of the displacement of the wall during its working life. This paper presents a simple rational means of doing so, illustrated by but not limited to, loads imposed during a conventional backfilling process. The analysis presented is an application of a vertical-displacement-hardening plasticity model incorporating nested interaction diagrams as yield functions together with a plastic potential and a hardening rule. The hardening rule, a key component of such a model, is assumed to depend only on the vertical centreline load V-0 versus vertical displacement w(0) relationship of the wall base. The model predicts that the horizontal, rotational and vertical displacements will be very simply inter-related; a prediction reinforced by the very satisfactory agreement obtained between it and the results from tests on a model footing supported on dense sand. (C) 2017 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:例如,当通过某种形式的极限状态分析(Butterfield,2012)选择了挡土墙底部的尺寸时,还应评估其使用寿命期间的位移。本文提出了一种简单而合理的方法,以但不限于常规回填过程中施加的载荷为例。提出的分析是垂直位移硬化塑性模型的应用,该模型结合了嵌套的相互作用图作为屈服函数以及塑性势和硬化规则。假设硬化规则是该模型的关键组成部分,仅取决于墙中心的垂直中心线载荷V-0与垂直位移w(0)的关系。该模型预测,水平,旋转和垂直位移将非常简单地相互关联。该预测得到了非常满意的共识,并且与在稠密砂土上支撑的模型基础上的测试结果之间取得了非常令人满意的一致性。 (C)2017年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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