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Numerical methods for innovative seismic design and analysis of tunnel structures located in highly active seismic zones

机译:高地震烈度区隧道结构创新抗震设计与分析的数值方法

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This paper presents the state-of-the art and practice for "innovative" seismic design and analyses of the Tunnel structures located in a highly active seismic zone. Seismic hazard and seismic design criteria applicable to various types of tunnel structures are discussed. Implementation of the Response-Spectrum-Compatible Ground Motion time histories and nonlinear finite element method are used for the analysis and design of the tunnels. A two-step analysis procedure has been adopted to assess the performance of the tunnels liner subjected to a design earthquake. The first step is to compute seismic induced deformations of the tunnels without the presence of the liner due to seismic wave propagation through the rock and or soil medium. The second step involves imposing the free-field deformations of the tunnel onto the structural liner through springs which accounted for interaction between the liner and surrounding medium. The objective of the analysis is to estimate the responses of final lining configurations of the tunnels due to seismic excitations. Seismic analysis and design of tunnel linings using ovaling and or racking deformations as a result of seismic wave scattering mechanism that would lead to different modes of distortion on the tunnel cavity will be discussed.
机译:本文介绍了“创新”抗震设计的最新技术和实践,并对位于高活性地震带中的隧道结构进行了分析。讨论了适用于各种类型隧道结构的地震危险性和地震设计标准。利用响应谱兼容的地震动时程和非线性有限元方法来进行隧道的分析和设计。采用了两步分析程序来评估遭受设计地震的隧道衬砌的性能。第一步是计算由于地震波传播通过岩石和/或土壤介质而导致的不存在衬砌的隧道的地震诱发变形。第二步涉及通过弹簧将隧道的自由场变形施加到结构衬砌上,这解释了衬砌和周围介质之间的相互作用。分析的目的是估计由于地震激发而引起的隧道最终衬砌构型的响应。将讨论由于地震波散射机制而导致的椭圆形和/或齿条形变形的隧道衬砌的地震分析和设计,地震波散射机制会导致隧道空腔的变形模式不同。

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