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WANG Deng-yin, CHEN Zhen-wen, TANG Yang, QI Li-jing. Behaviors of high broken line concrete face rockfill dam of Bashan Hydropower Station[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(9): 1483-1489.
Citation: WANG Deng-yin, CHEN Zhen-wen, TANG Yang, QI Li-jing. Behaviors of high broken line concrete face rockfill dam of Bashan Hydropower Station[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(9): 1483-1489.

Behaviors of high broken line concrete face rockfill dam of Bashan Hydropower Station

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  • Published Date: September 14, 2011
  • The back analysis of the nonlinear Duncan E-B model parameters is carried out based on the prototype observation data of Bashan concrete face rockfill dam during the filling and operation periods. The observed data are employed to validate the rationality of the parameters. According to the back analysis parameters, three-dimensional viscoelastic finite element simulation is performed to calculate the stress and deformation of faceslab during the period from the filling of the dam to the end of flood 7.10. The deformation of connecting panel seam, the separation between concrete slab and cushion layer and the insufficient cushion materials are calcutated. The causes for the third-stage concrete face cracks and locally compressive damage are analyzed. Analysis shows that the settlement of rockfill placement does not converge, and the initial storage is too fast. They are the main reasons for the cracks and the damage. After the flood, there is no major tensile stress area in the dam. The deformation of vertical and peripheral joints is small, and the three-phase panel at the top has a slight separation between concrete slab and cushion layer. The broken line of concrete face is satisfactorily coordinated with the surrounding deformation, and there is no abrupt stress or deformation. The connecting plate to improve the deformation and stress state of the concrete face is effective.
  • [1]
    李国英 , 赵魁芝 , 陈铁林 , 等 . 巴山水电站面板堆石坝筑坝材料静力特性试验研究报告 [R]. 南京 : 南京水利科学研究院 , 2004. (LI Guo-ying, ZHAO Kui-zhi, CHEN Tie-lin, et al. Bashan concrete face rockfill dam materials Experimental study of static[M]. Nanjing: Nanjing Hydraulic Research Institute, 2004. (in Chinese))
    [2]
    张玉龙 . 巴山水电站工程原型观测资料分析报告 [R]. 昆明 : 昆明勘测设计研究院 , 2008. (ZHANG Yu-long.. Bashan Hydropower Project prototype observation data analysis report[R]. Kunming: KunMing Institute of Survey and Design, 2008. (in Chinese))
    [3]
    沈珠江 . 土石料的流变模型及其应用 [J]. 水利水运科学研究 , 1994(4): 335 – 342. (SHEN Zhu-jiang. Rheological models of soil aggregates and its application[J]. Hydraulic & Shipping Research, 1994(4): 335 – 342. (in Chinese))
    [4]
    米占宽 , 沈珠江 , 李国英 . 高面板堆石坝坝体流变性状 [J]. 水利水运工程学报 , 2002(2): 35 – 41. (MI Zhan-kuan, SHEN Zhu-jiang, LI Guo-ying. Rheological models for high concrete face rockfill dam[J]. Hydro-science and Engineering, 2002(2): 35 – 41. (in Chinese))
    [5]
    王登银 , 梁现培 . 巴山水电站堆石料流变特性研究 [J]. 水利学报 , 待刊 . (WANG Deng-yin, LIANG Xian-pei. Bashan station rheological properties of rockfill[J]. Journal of Hydraulic Engineering, in Press. (in Chinese))
    [6]
    朱 晟 , 王永明 , 胡祥群 . 免疫遗传算法在土石坝筑坝粗粒料本构模型参数反演中的应用研究 [J]. 岩土力学 , 2010, 31 (3): 962 – 966. (ZHU Sheng, WANG Yong-ming, HU Xiang-qun. Application of immune genetic algorithm to back analysis for arameters in model of rockfill dam coarse grain material[J]. Rock and Soil Mechanics, 2010, 31 (3): 962 – 966. (in Chinese))
    [7]
    曹克明 , 汪易森 , 张宗亮 . 高混凝土面板堆石坝的设计与施工 [J]. 水力发电 , 2001 (10): 49 – 52 . (CAO Ke-ming, WANG Yi-sen, ZHANG Zong-liang. High concrete face rockfill dam design and construction[J]. Hydropower, 2001 (10): 49 – 52. (in Chinese))
    [8]
    马洪琪 , 曹克明 . 超高面板坝的关键技术问题 [J]. 水利水电施工 , 2008 (1): 12 – 17 . (MA Hong-qi, CAO Ke-ming. The key technical issues high concrete face rockfill dam[J]. Water Resources and Hydropower Construction, 2008 (1): 12 – 17 . (in Chinese))
    [9]
    曹克明 , 徐建军 . 超高面板坝面板临界挠度探讨和设计改进 [J]. 水力发电 , 2008(11): 98 – 102. (CAO Ke-ming, XU Jian-jun. Critical deflection of ultra-high concrete face rockfill dam panel and design improvements[J]. Hydropower, 2008(11): 98 – 102. (in Chinese))
    [10]
    白旭宏 , 黄艺升 . 天生桥一级水电站混凝土面板堆石坝设计施工及其认识 [J]. 水力发电学报 , 2002(2): 108 – 123. (BAI Xu-hong, HUANG Yi-sheng. TSQ-concrete face rockfill dam design and construction of knowledge[J]. Hydroelectric Engineering, 2002(2): 108 – 123. (in Chinese))
    [11]
    陈振文 , 齐立景 , 高礼洪 . 重庆巴山水电站施工进度控制 [R]. 杭州 : 华东勘测设计研究院 , 2007. (CHEN Zhen-wen, QI Li-jing, GAO Li-hong. Chongqing Bashan Hydropower construction schedule control[R]. Hangzhou: East China Investation & Design Institute, 2007. (in Chinese))
    [12]
    DL/T 5057 — 2009 水工混凝土结构设计规范 [S]. 北京 : 中国电力出版社 , 2009. (DL/T 5057 — 2009 Design specification for hydraulic concrete structures[S]. Beijing: China Electric Power Press, 2009. (in Chinese))
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