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首页> 外文期刊>Advances in civil engineering >The Effect of Shear Sliding of Vertical Contraction Joints on Seismic Response of High Arch Dams with Fine Finite Element Model
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The Effect of Shear Sliding of Vertical Contraction Joints on Seismic Response of High Arch Dams with Fine Finite Element Model

机译:垂直收缩接头剪切滑动对细有限元模型高拱坝地震响应的影响

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摘要

The contraction joints of arch dams with and without shear keys are simplified to be with no-slip condition and with relative sliding condition, respectively. Based on the Lagrange multiplier method, a contact model considering the manner of independent cantilever dead load type with no-slip condition and relative sliding condition is proposed to model the nonlinearities of vertical contraction joins, which is special to the nonlinear analysis of arch dams considering the manner of dead load type. Different from the conventional Gauss iterative method, the strategy of the alternating iterative solution of normal force and tangential force is employed. The parallelization based on overlapping domain decomposition method (ODDM) and explicit message passing using distributed memory parallel computers is employed to improve the computational efficiency. An existing high arch dam with fine finite element model is analyzed to investigate the effect of shear sliding of vertical joints on seismic response of the arch dam. The result shows that the values of maximum principal tensile stress under relative sliding condition are significantly greater than those under no-slip condition.
机译:具有和不带剪切键的拱坝收缩接头被简化为具有无滑移条件和相对滑动条件。基于拉格朗日乘法器方法,提出了一种接触型号,考虑到无滑移条件和相对滑动条件的独立悬臂死载型方式,以模拟垂直收缩连接的非线性,这对考虑的拱坝的非线性分析很特别死载类型的方式。不同于传统的高斯迭代方法,采用正常力和切向力的交替迭代解决方案的策略。采用基于重叠域分解方法(ODDM)和使用分布式存储器并行计算机的显式消息的并行化来提高计算效率。分析了具有精细有限元模型的现有高拱坝,研究了垂直接头剪切滑动对拱坝地震反应的影响。结果表明,在相对滑动条件下的最大主拉伸应力的值显着大于无滑移条件下的值。

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