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Deformation coordination analysis of CC-RCC combined dam structures under dynamic loads 被引量:1
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作者 Bo-wen Shi Ming-chao Li +2 位作者 Ling-guang Song Meng-xi Zhang Yang Shen 《Water Science and Engineering》 EI CAS CSCD 2020年第2期162-170,共9页
A combined dam structure using different concrete materials offers many practical benefits.There are several real-world cases where largevolume heterogeneous concrete materials have been used together.From the enginee... A combined dam structure using different concrete materials offers many practical benefits.There are several real-world cases where largevolume heterogeneous concrete materials have been used together.From the engineering design standpoint,it is crucial to understand the deformation coordination characteristics and mechanical properties of large-volume heterogeneous concrete,which affect dam safety and stability.In this study,a large dam facility was selected for a case study,and various design schemes of the combined dam structure were developed by changing the configurations of material zoning and material types for a given dam shape.Elastoplastic analysis of the damfoundation-reservoir system for six schemes was carried out under dynamic conditions,in which the concrete damaged plasticity(CDP)model,the Lagrangian finite element formulation,and a surface-to-surface contact model were utilized.To evaluate the mechanical properties of zoning interfaces and coordination characteristics,the vertical distribution of the first principal stress at the longitudinal joint was used as the critical index of deformation coordination control,and the overall deformation and damage characteristics of the dam were also investigated.Through a comparative study of the design schemes,an optimal scheme of the combined dam structure was identified:large-volume roller-compacted concrete(RCC)is recommended for the dam body upstream of the longitudinal joint,and high-volume fly ash conventional concrete(CC)for the dam body downstream of the longitudinal joint.This study provides engineers with a reference basis for combined dam structure design. 展开更多
关键词 Combined dam structure Deformation coordination cc-rcc Dynamic response Finite element simulation Concrete damaged plasticity(CDP)model
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碾压混凝土和常态混凝土联合筑坝结构温度应力与变形分析
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作者 汪娟 赵凯丽 王振红 《水利与建筑工程学报》 2025年第2期149-154,共6页
针对碾压混凝土和常态混凝土在坝体交界面区域引发复杂的温度应力和变形问题,以向家坝重力坝为例,结合三维有限元分析,进行碾压-常态混凝土联合筑坝结构温度应力与变形研究,分析不同性质的混凝土因热力学指标差异对缝开度变化的影响以... 针对碾压混凝土和常态混凝土在坝体交界面区域引发复杂的温度应力和变形问题,以向家坝重力坝为例,结合三维有限元分析,进行碾压-常态混凝土联合筑坝结构温度应力与变形研究,分析不同性质的混凝土因热力学指标差异对缝开度变化的影响以及施工期和运行期坝体温度作用下的应力与变形情况。结果表明:当坝体蓄水至正常水位时,纵缝和横缝的应力分布呈现出以压应力为主的特征;随着上游水位的上升,坝体会因齿槽布置形式的差异以及地基条件相对软弱而发生顺河向下游和竖向向下的位移;两种性态混凝土交界处应力相对较小,不同部位、不同类型混凝土最大拉应力通常出现在后期冷却结束。 展开更多
关键词 碾压混凝土和常态混凝土 联合筑坝 温度应力 缝开度 大坝变形
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常态-碾压混凝土联合筑坝材料变形特性与抗剪强度准则研究 被引量:6
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作者 李明超 张梦溪 张津瑞 《水利学报》 EI CSCD 北大核心 2019年第2期157-164,共8页
联合筑坝形式下坝体的多个部位往往存在大体积常态与碾压混凝土材料共用的情况。坝体结构中两种材料分布部位的多样性和力学性能的差异性是导致坝体出现变形协调问题的主要原因。为分析筑坝材料的变形协调特性,建立了常态-碾压混凝土复... 联合筑坝形式下坝体的多个部位往往存在大体积常态与碾压混凝土材料共用的情况。坝体结构中两种材料分布部位的多样性和力学性能的差异性是导致坝体出现变形协调问题的主要原因。为分析筑坝材料的变形协调特性,建立了常态-碾压混凝土复合试件细观数值模型,基于实际工程材料性能数据,采用非均质有限元法计算分析了复合试件的细观强度特性,评价了粉煤灰掺量、材料界面倾斜角对联合筑坝复合材料力学性能的影响,结果表明:混凝土复合试件强度介于两种材料之间且随粉煤灰掺量的增加而降低,侧向压应力对复合试件的强度提升较大,根据数值试验数据,提出了联合筑坝形式下复合试件的破坏准则,分析了复合试件斜剪破坏产生机制,验证了剪切破坏准则的有效性与可靠性,研究结果可为联合筑坝材料设计提供参考。 展开更多
关键词 联合筑坝 常态-碾压混凝土 复合材料试件 剪切破坏准则 数值模拟
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