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Earthquake safety assessment of concrete arch and gravity dams 被引量:12
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作者 林皋 胡志强 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2005年第2期251-264,共14页
Based on research studies currently being carried out at Dalian University of Technology, some important aspects for the earthquake safety assessmcnt of concrete dams are reviewed and discussed. First, the rate-depend... Based on research studies currently being carried out at Dalian University of Technology, some important aspects for the earthquake safety assessmcnt of concrete dams are reviewed and discussed. First, the rate-dependent behavior of concrcte subjected to earthquake loading is examined, emphasizing the properties of concrete under cyclic and biaxial loading conditions. Second, a modified four-parameter Hsieh-Ting-Chen viscoplastic consistency model is developed to simulate the rate-dependent behavior of concrete. The earthquake response of a 278m high arch dam is analyzed, and the results show that the strain-rate effects become noticeable in the inelastic range, Third, a more accurate non-smooth Newton algorithm for the solution of three-dimensional frictional contact problems is developed to study the joint opening effects of arch dams during strong earthquakes. Such effects on two nearly 300m high arch dams have been studied. It was found that the canyon shape has great influence on the magnitude and distribution of the joint opening along the dam axis. Fourth, the scaled boundary finite element method presented by Song and Wolf is employed to study the dam-reservoir-foundation interaction effects of concrete dams. Particular emphases were placed on the variation of foundation stiffness and the anisotropic behavior of the foundation material on the dynamic response of concrete dams. Finally, nonlinear modeling of concrete to study the damage evolution of concrete dams during strong earthquakes is discussed. An elastic-damage mechanics approach for damage prediction of concrete gravity dams is described as an example. These findings are helpful in understanding the dynamic behavior of concrete dams and promoting the improvement of seismic safety assessment methods. 展开更多
关键词 arch dam gravity dam earthquake safety dynamic behavior of concrete strain-rate effect joint-opening effect dam-foundation interaction non-linear modeling
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Coupled elasto-plasticity damage constitutive models for concrete 被引量:1
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作者 Qiang XU Jian-yun CHEN +1 位作者 Jing LI Gang XU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2013年第4期256-267,共12页
The paper is to design and construct a coupled elasto-plasticity damage constitutive model for concrete.Based on the energy dissipation principle,the Hsieh-Ting-Chen four-parameter yield function is used.The model can... The paper is to design and construct a coupled elasto-plasticity damage constitutive model for concrete.Based on the energy dissipation principle,the Hsieh-Ting-Chen four-parameter yield function is used.The model can reflect different strength characteristics of concrete in tension and compression,and reduce the limitation and lacuna of the traditional damage constitutive models for concrete.Furthermore,numerical test for concrete stress-strain relation under uniaxial tension and compression is given.Moreover,the damage process of concrete gravity dam is calculated and analyzed in seismic load.Compared with other damage constitutive models,the proposed model contains only one unknown parameter and the other parameters can be found in the Hsieh-Ting-Chen four-parameter yield function.The same damage evolution law,which is used for tension and compression,is good for determining stress-strain constitutive and damage characteristics in complex stress state.This coupled damage constitutive models can be applied in analyzing damage of concrete gravity dam and arch dam. 展开更多
关键词 concrete damage constitutive models Hsieh-Ting-Chen four-parameter yield function Uniaxial tension Uniaxial compression gravity dam arch dam
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乌江渡水电站坝体接缝变形监测分析 被引量:2
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作者 马传彬 文富勇 《西北水电》 2022年第4期85-89,共5页
坝体接缝变形是混凝土拱形重力坝安全稳定的重要监测效应量。结合混凝土拱形重力坝不同结构部位受力特点,对乌江渡水电站1983—2013年间的坝体接缝变形监测数据分析表明:坝体纵、横缝变形测值均随坝址气温呈现明显的年周期性变化,变形... 坝体接缝变形是混凝土拱形重力坝安全稳定的重要监测效应量。结合混凝土拱形重力坝不同结构部位受力特点,对乌江渡水电站1983—2013年间的坝体接缝变形监测数据分析表明:坝体纵、横缝变形测值均随坝址气温呈现明显的年周期性变化,变形测值逐年和多年变幅相对较小且趋于稳定,能够反映混凝土拱形重力坝接缝变形的发展规律;另外,针对坝体重点接缝变形部位且可修复或更换的监测仪器提出了建议,可为大坝日常观测维护提供参考。 展开更多
关键词 混凝土拱形重力坝 坝体接缝变形 监测分析 乌江渡水电站
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碾压混凝土双曲拱坝、重力坝边坡开挖爆破技术的研究——以贵州大花水水电站碾压砼双曲拱坝为例
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作者 李晓红 《邵阳学院学报(自然科学版)》 2008年第2期83-86,共4页
贵州大花水水电站碾压混凝土双曲拱坝、重力坝开挖采用深孔梯段微差爆破.结合此地质条件,分析了岩层具体情况,对爆破参数和装药结构进行设计,准确控制钻孔的角度和梯段高度,使边坡开挖在满足技术质量的要求下,节约了成本,边坡预裂达到... 贵州大花水水电站碾压混凝土双曲拱坝、重力坝开挖采用深孔梯段微差爆破.结合此地质条件,分析了岩层具体情况,对爆破参数和装药结构进行设计,准确控制钻孔的角度和梯段高度,使边坡开挖在满足技术质量的要求下,节约了成本,边坡预裂达到理想效果. 展开更多
关键词 碾压混凝土双曲拱坝 重力坝开挖 预裂爆破
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