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王建祥, 刘 亮, 张媛媛.浇筑式沥青混凝土心墙坝应力变形有限元分析水资源与水工程学报[J].,2014,25(4):119-122
浇筑式沥青混凝土心墙坝应力变形有限元分析
Finite element analysis of stress and deformation of concrete core wall dam of pouring asphalt
  
DOI:10.11705/j.issn.1672-643X.2014.04.024
中文关键词:  浇筑式沥青混凝土心墙坝  应力  变形  邓肯-张模型
英文关键词:core wall dam of pouring asphalt concrete  stress  displacement  Duncan-Chang model
基金项目:新疆维吾尔自治区高校科研计划项目(XJEDU2012S12);新疆水利水电工程重点学科基金资助项目(XJZDXK-2002-10-05)
作者单位
王建祥, 刘 亮, 张媛媛 (新疆农业大学 水利与土木工程学院 新疆 乌鲁木齐 830052) 
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中文摘要:
      基于邓肯-张模型,运用数值仿真分析技术,对新疆某浇筑式沥青混凝土心墙坝进行有限元计算,得到竣工期和满蓄期大坝的应力变形特性。分析结果表明:顺河向水平最大位移及堆石体和心墙接触面最大竖向相对位移均发生在上游坝面约1/3坝高处;竣工期顺河向水平位移基本关于坝轴线对称;满蓄期,水压力作用下,顺河向位移向上游减小,而向下游增大,最大位移为9.1 cm。最大沉降发生在满蓄期,位于坝体中轴线偏下游约1/2坝高处,最大位移为16.7 cm。大主应力和小主应力沿坝高方向呈现从坝顶到坝底逐步增加的趋势,其最大值均发生在坝轴线处心墙与基座接触部位。研究所获得的计算分析结果,为同类工程的设计和计算分析提供参考。
英文摘要:
      Based on Duncan-Chang model, using the analysis technology of numerical simulation, the paper used FEM to calculate the core wall dam of pouring asphalt concrete in Xinjiang and got the stress and deformation characteristics of dam in completion period and storage period. The analysis results show that the horizontal maximal displacement and the maximum vertical relative displacement at earthrock body and contacted surface of core wall along river occurs in the place of 1/3 dam height of upstream dam surface;the horizontal displacement along river in completion period is probably symmetry for dam axis;in storage period, under the action of water pressure, the riveralong displacement is reduced at upstream and increased at downstream.The maximal displacement is 9.1 cm at downstream. The maximal subsidence occurs in storage period and is located on dam axis and deviation at downstream of about 1/2 dam height, and the maximal displacement is 16.7 cm.The major principal stress and minor principal stress present the trend of gradual increment from top to bottom of the dam along the direction of dam high, and the maximum value occurs in the contact place between core wall of dam axis and the base area. The result can provide reference for the design, calculation and analysis of similar engineering.
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