首页> 外文期刊>International journal of geomechanics >Predicting the Earthquake-Induced Permanent Deformation of Concrete Face Rockfill Dams Using the Strain-Potential Concept in the Finite-Element Method
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Predicting the Earthquake-Induced Permanent Deformation of Concrete Face Rockfill Dams Using the Strain-Potential Concept in the Finite-Element Method

机译:基于有限元方法的应变电位概念预测混凝土面板堆石坝的地震诱发永久变形

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Presented in this paper is a modified strain-potential method for the prediction of earthquake-induced permanent deformation of concrete face rockfill dams (CFRDs). The concept of decomposing the total strain of rockfill materials into a viscoelastic part and a plastic part during dynamic loading was explained based on experimental observations. Use of the strain-decomposition concept in the finite-element method resulted in two residual strain-related terms on the right-hand side of the dynamic equilibrium equation. An approach to predict the equivalent number of loading cycles, which is an independent variable in a residual strain model, was proposed. It was assumed that the energy dissipated in an element during an irregular strain history equals that dissipated in an equivalent regular one. The energy-based approach was proved effective in numerically evaluating the equivalent number of loading cycles by simple column tests considering both compression and shearing. The modified strain-potential method can be easily implemented in an equivalent linear analysis program, and the history of permanent deformation accumulation can be directly obtained without recourse to sophisticated constitutive models. Effectiveness of the method was demonstrated by a successful application in a high CFRD. (C) 2017 American Society of Civil Engineers.
机译:本文提出了一种改进的应变势方法,用于预测地震引起的混凝土面板堆石坝(CFRD)的永久变形。基于实验观察,解释了在动态加载过程中将堆石料的总应变分解为粘弹性部分和塑性部分的概念。在有限元方法中使用应变分解概念会在动态平衡方程的右侧产生两个残余应变相关项。提出了一种预测载荷循环当量数的方法,该方法是残余应变模型中的一个独立变量。假设在不规则应变历史中某个元素所耗散的能量等于在一个等效规则历史中所耗散的能量。通过简单的考虑压缩和剪切的柱试验,基于能量的方法在数值评估等效加载循环数方面被证明是有效的。改进的应变势方法可以轻松地在等效的线性分析程序中实现,并且无需借助复杂的本构模型即可直接获得永久变形累积的历史记录。通过在高CFRD中的成功应用证明了该方法的有效性。 (C)2017年美国土木工程师学会。

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