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《考虑岩体时效深埋隧洞施工过程的理论解析_开挖_锚喷与衬砌支护的全过程模拟与解答(1)》由会员上传分享,免费在线阅读,更多相关内容在应用文档-天天文库。
1、第36卷第7期岩土工程学报Vol.36No.72014年7月ChineseJournalofGeotechnicalEngineeringJuly2014DOI:10.11779/CJGE201407018考虑岩体时效深埋隧洞施工过程的理论解析——开挖、锚喷与衬砌支护的全过程模拟与解答112王华宁,曾广尚,蒋明镜(1.同济大学航空航天与力学学院,上海200092;2.同济大学土木工程学院地下建筑与工程系,上海200092)摘要:对具有时效特性的流变岩体,施工过程对围岩力学响应有显著影响。针对黏弹性时效岩体中深埋圆形隧洞的断面及纵向开挖、锚
2、喷和衬砌施工,用圆柱型正交各向异性弹性体模拟锚固后岩体,建立材料特性变化后锚固区力学响应的计算方法,进而导出Burgers岩体全施工过程的封闭解析解。根据解答分析了锚固区各向异性程度、锚固及衬砌支护时刻、锚固厚度对锚固区应力、位移的影响。分析表明:锚固区环向刚度的改变可显著影响岩体力学响应,而改变径向刚度则变化极小;衬砌受力与其施加时刻相关,而受锚固时刻影响不大;增加锚固区厚度可减小位移,优化锚固区受力,但对衬砌的受力影响很小。本解答可进行相似条件下隧洞初步设计。关键词:时效;锚喷支护;解析解中图分类号:TU457文献标识码:A文章编号:
3、1000–4548(2014)07–1334–10作者简介:王华宁(1975–),女,副教授,主要从事岩土工程中数值与解析方法研究。E-mail:wanghn@tongji.edu.cn。Analyticalsolutionsofdeeplyburiedtunnelduringconstructionconsideringtime-dependentbehaviorsofrock——simulationsandsolutionsofsequentialexcavation,rockboltreinforcementandlinerinst
4、allation112WANGHua-ning,ZENGGuang-shang,JIANGMing-jing(1.SchoolofAerospaceEngineeringandAppliedMechanics,TongjiUniversity,Shanghai200092,China;2.DepartmentofGeotechnicalEngineering,CollegeofCivilEngineering,TongjiUniversity,Shanghai200092,China)Abstract:Fortherheologicalr
5、ockwithtime-dependentbehaviors,themechanicalresponseisgreatlyaffectedbythesequentialconstructionofthetunnel.Thecross-sectionexcavation,longitudinaladvancement,rockboltreinforcementandlinerinstallationareaccountedforduringtheanalyticalderivationforadeeplyburiedcirculartunn
6、elinviscoelasticrock.Thecharacteristicsofrockboltreinforcementregionareregardedashomogeneouscylindricallyanisotropicelasticity,andthecorrespondingmethodisthenproposed.Accountingforthewholeconstructionprocess,includingsequentialexcavation,reinforcementandlinerinstallation,
7、theclosedformsolutionsarederivedwhentherockissimulatedtoBurgersviscoelasticmodel.Basedonthesolutions,anextensiveparametricanalysisisthenperformedtoinvestigatetheinfluencesofanisotropydegree,installationtimeofrockboltandlinerandthicknessofreinforcedregionontunnelconvergenc
8、eandthestresses.Theanalysisshowsthatthehoopstiffnessofthereinforcedregionhasasignificantimpacton