文章摘要
洪振国, 黄立群.调压井结构内力计算研究Journal of Water Resources and Water Engineering[J].,2015,26(4):177-182
调压井结构内力计算研究
Research on internal force calculation of surge shaft structure
  
DOI:10.11705/j.issn.1672-643X.2015.04.033
中文关键词: 水电站  调压井内力  结构力学法  线弹性有限元法  非线性有限元法
英文关键词: hydropower station  internal forces of surge shaft  structural mechanics method  linear elastic finite element method  nonlinear finite element method
基金项目:
Author NameAffiliation
HONG Zhenguo, HUANG Liqun (云南省水利水电勘测设计研究院 云南 昆明 650021) 
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中文摘要:
      针对目前水电站调压井结构向体形巨大化、地质条件多样化、受力条件复杂化发展的方向,内力计算方法对调压井安全性和经济性非常重要。通过结构力学法、线弹性有限元法和非线性有限元法3种方法计算,分析计算调压井结构的受力特征。结果表明:调压井的内力自上而下逐渐增加,较大内力在井筒与底板相接处,最大内力在压力钢管开孔下缘点。调压井底板的内力由板中心向外增大,在底板与井筒相接处内力较大。经这3种计算方法比较,非线性有限元法计算内力最小,配筋量最小。因此非线性有限元法精准反映结构实际受力情况,使调压井结构配筋最经济和合理,使选定调压井的结构为最优结构。
英文摘要:
      Aimed at the present direction that the hydropower station surge shaft structure develop to the great shape, geological conditions of diversification, complicated stress condition,the internal force calculation method of surge shaft is very important to safety and economy.By the methods of structural mechanics, linear elastic finite element and nonlinear finite element,the paper analyzed the force characteristics of surge shaft structure.The result showed that the internal force of surge shaft increases from top to down gradually, the larger internal force of surge shaft appears at the connection part between shaft and bottom plate, the maximum internal force is in the open lower edge point of pressure pipe. The internal force of surge shaft increases from the center of plate to outward.The internal force in the connection part between bottom plate and shaft is larger.The comparision of the three methodsindicated that the internal force calculated by nonlinear finite element method by is the minimum, the amount of reinforcement is the minimum.So nonlinear finite element calculation can accurately reflect the structure of actual stress. The reinforcement of surge shaft structure is the most economical and reasonable. The structure of selected surge shaft is the optimum.
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