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Numerical Simulation on Slabs Dislocation of Zipingpu Concrete Faced Rockfill Dam during the Wenchuan Earthquake Based on a Generalized Plasticity Model

机译:基于广义塑性模型的汶川地震紫坪铺面板堆石坝面板位移数值模拟。

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摘要

After the Wenchuan earthquake in 2008, the Zipingpu concrete faced rockfill dam (CFRD) was found slabs dislocation between different stages slabs and the maximum value reached 17 cm. This is a new damage pattern and did not occur in previous seismic damage investigation. Slabs dislocation will affect the seepage control system of the CFRD gravely and even the safety of the dam. Therefore, investigations of the slabs dislocation's mechanism and development might be meaningful to the engineering design of the CFRD. In this study, based on the previous studies by the authors, the slabs dislocation phenomenon of the Zipingpu CFRD was investigated. The procedure and constitutive model of materials used for finite element analysis are consistent. The water elevation, the angel, and the strength of the construction joints were among major variables of investigation. The results indicated that the finite element procedure based on a modified generalized plasticity model and a perfect elastoplastic interface model can be used to evaluate the dislocation damage of face slabs of concrete faced rockfill dam during earthquake. The effects of the water elevation, the angel, and the strength of the construction joints are issues of major design concern under seismic loading.
机译:2008年汶川地震后,紫坪铺面板混凝土堆石坝(CFRD)在不同阶段的平板之间错位,最大值达到17 cm。这是一种新的破坏模式,在以前的地震破坏调查中并未发生。平板的错位将严重影响CFRD的防渗系统,甚至影响大坝的安全。因此,研究平板错位的机理和发展对CFRD的工程设计可能具有重要意义。在这项研究的基础上,根据作者先前的研究,对紫坪铺CFRD的平板错位现象进行了研究。用于有限元分析的材料的程序和本构模型是一致的。水位,角度和施工缝的强度是研究的主要变量。结果表明,基于修正的广义塑性模型和理想弹塑性界面模型的有限元程序可用于评价面板堆石坝面板在地震过程中的位错破坏。水位,角度和施工缝强度的影响是地震荷载下主要设计关注的问题。

著录项

  • 期刊名称 other
  • 作者

    Bin Xu; Yang Zhou; Degao Zou;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 572407
  • 总页数 5
  • 原文格式 PDF
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  • 中图分类
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