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核电站导流堤围堰有限元强度折减稳定性分析
引用本文:芮勇勤,杨斌,吴艳娟. 核电站导流堤围堰有限元强度折减稳定性分析[J]. 长沙交通学院学报, 2010, 26(3): 8-13,24
作者姓名:芮勇勤  杨斌  吴艳娟
作者单位:1. 长沙理工大学,交通运输工程学院,湖南,长沙,410004;公路工程教育部重点实验室(长沙理工大学),湖南,长沙,410004;长沙理工大学,公路工程地质灾害研究所,湖南,长沙,410004
2. 长沙理工大学,交通运输工程学院,湖南,长沙,410004;长沙理工大学,公路工程地质灾害研究所,湖南,长沙,410004
3. 东北大学,资源与土木工程学院,辽宁,沈阳,110004
基金项目:国家"863"计划项目 
摘    要:以核电站导流堤围堰稳定性问题展开研究,在进行导流堤围堰设计优化、比较的基础上,介绍了有限元数值模拟分析方法,以及有限元强度折减原理与方法;选用施工围堰最为不利断面进行稳定性分析验算,考虑渗流作用与流固耦合影响、强度折减(SSR)进行稳定性分析.分析结果表明,核电站导流堤围堰有限元强度折减稳定性分析能够验证工程实践,研究结果可为类似工程提供技术指导.

关 键 词:导流堤围堰  渗流  流固耦合  强度折减  稳定性

Stability analysis of diversion dike and cofferdam of nuclear power station based on fem shear strength reduction
RUI Yong-qin,YANG Bin,WU Yan-juan. Stability analysis of diversion dike and cofferdam of nuclear power station based on fem shear strength reduction[J]. Journal of Changsha Communications University, 2010, 26(3): 8-13,24
Authors:RUI Yong-qin  YANG Bin  WU Yan-juan
Affiliation:RUI Yong-qin, YANG Bin , WU Yah-juan (1. School of Traffic and Transportation Engineering, Changsha University of Science & Technology, Cbangsha 410004, China; 2. Key Laboratory of Highway Engineering (Changsha University of Science & Technology) Ministry of Education, Changsha 410004, China; 3. Geological Hazards Institute of Highway Engineering,Changsha University of Science &Technology,Changsha 410004, China; 4. College of Resources and Civil Engineering, Northeastern University, Shenyang 110004, China)
Abstract:The research on the stability of diversion dike and cofferdam of nuclear power station has been developed by introducing the finite element numerical simulation method and the finite elements strength reduction theory and method based on design optimization and comparison of cofferdam and diversion dike. The most disadvantage section is selected to do the stability analysis checking by considering seepage, fluid-solid coupling effect and strength reduction (SSR),which can verify the actual engineering clearly, and the research results can provide technical guidance for similar projects.
Keywords:diversion dike and cofferdam  strength reduction  stability seepage  fluid-solid coupling field  shear
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