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Three-Dimensional Nonlinear Seismic Response of Immersed Tunnel in Horizontally Layered Site under Obliquely Incident SV Waves

机译:倾斜入射SV波下水平分层部位浸没隧道的三维非线性地震响应

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摘要

A three-dimensional (3D) detailed numerical model of an immersed tunnel in a horizontally layered site is established in this study. The 3D seismic response of the immersed tunnel in a horizontally layered site subjected to obliquely incident waves is analyzed based on the precise dynamic stiffness matrix of the soil layer and half-space via combined viscous-spring boundary and equivalent node stress methods. The nonlinear effects of external and internal site conditions on the whole model were determined by equivalent linearization algorithm and Mohr-Coulomb model, respectively. The proposed model was then applied to investigate the nonlinear seismic response of an immersed tunnel in the Haihe River subjected to seismic waves of oblique incidence. The dislocation (opening) of pipe joints in the immersed tunnel were analyzed to determine the response characteristics of the shear keys and overall displacement of the tunnel; the dynamic responses of the immersed tunnel subjected to obliquely incident seismic waves markedly differ from those of vertically incident seismic SV waves. The maximum stress value of shear keys and the maximum dislocation of the pipe joint appear as upon critical angle. The overall displacement of the tunnel increases as incident angle increases. Under severe earthquake conditions, both the pipe corners and midspan section of the roof and floor are likely to produce crack. These areas need careful consideration in the seismic design of immersed tunnel structures.
机译:在本研究中建立了一个三维(3D)水平分层部位中浸没隧道的详细数值模型。基于粘性弹簧边界和等效节点应力方法的精确动态刚度矩阵,分析了对倾斜入射波的水平分层部位中的浸没隧道的3D地震响应。通过等效线性化算法和Mohr-Coulomb模型确定了整个模型的外部和内部场地条件的非线性效应。然后应用所提出的模型来研究海河浸没型倾斜发病率的浸没隧道的非线性地震反应。分析了浸入隧道中管接头的位错(开口)以确定剪切钥匙和隧道整体位移的响应特性;受到倾斜入射地震波的浸没隧道的动态响应显着不同于垂直入射地震SV波的波浪。剪切键的最大应力值和管接头的最大位错出现在临界角度上。由于入射角增加,隧道的整体位移增加。在严重的地震条件下,屋顶和地板的管角和半轴部分可能会产生裂缝。这些领域需要仔细考虑浸入隧道结构的地震设计。

著录项

  • 来源
    《Shock and vibration》 |2019年第7期|3131502.1-3131502.17|共17页
  • 作者单位

    Tianjin Chengjian Univ Tianjin Key Lab Civil Bldg Protect & Reinforcment Tianjin 300384 Peoples R China|Tianjin Chengjian Univ Sch Civil Engn Tianjin 300384 Peoples R China;

    Tianjin Chengjian Univ Tianjin Key Lab Civil Bldg Protect & Reinforcment Tianjin 300384 Peoples R China|Tianjin Chengjian Univ Sch Civil Engn Tianjin 300384 Peoples R China;

    Tianjin Chengjian Univ Tianjin Key Lab Civil Bldg Protect & Reinforcment Tianjin 300384 Peoples R China|Tianjin Chengjian Univ Sch Civil Engn Tianjin 300384 Peoples R China;

    Tianjin Chengjian Univ Tianjin Key Lab Civil Bldg Protect & Reinforcment Tianjin 300384 Peoples R China|Tianjin Chengjian Univ Sch Civil Engn Tianjin 300384 Peoples R China;

    Tianjin Chengjian Univ Tianjin Key Lab Civil Bldg Protect & Reinforcment Tianjin 300384 Peoples R China|Tianjin Chengjian Univ Sch Civil Engn Tianjin 300384 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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