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Influence of Incoherence and Wave Passage Effects on Seismic Performances of Long Immersed Tunnel

机译:不相停和波段对长浸隧道抗震性能影响的影响

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This paper conducts time history analysis to explore the influence of spatially varying earthquake ground motion (SVEGM) on seismic responses of the long immersed tunnel. Incoherence effect and wave passage effect are mainly focused here. Moreover, three coherency models are adopted to investigate the sensitivity of the computed responses to the models. The calculation results show that SVEGM enlarges seismic responses of the immersed tunnel significantly than uniform excitation. Considering wave passage effect and incoherence effect simultaneously makes the seismic responses increase more sharply than considering the latter only. The deformation of Gina gasket is barely sensitive to coherency model, while the axial compression force is sensitive to coherency model. It indicates suppressing that the fundamental mode and dominating higher-mode response are the hallmark of multi-support excitation. The great differences of three models decay with separation at low frequencies and their coherency in frequency domain are the main reasons that cause the variations of the axial compression forces.
机译:本文进行时间历史分析,探讨了空间变化的地震地面运动(SVEGM)对长浸隧道抗震反应的影响。不连贯的效果和波通道效应主要集中在这里。此外,采用了三种一致性模型来研究计算的响应对模型的敏感性。计算结果表明,SVEGM显着扩大了浸没隧道的地震反应而不是均匀的激发。考虑波通道效应和不连贯效果同时使地震响应增加比仅考虑后者更急剧增加。 Gina垫片的变形对一致性模型几乎敏感,而轴向压缩力对一致性模型敏感。它表明抑制基本模式和主导更高模式响应是多支持激励的标志。在低频下分离的三种模型衰减的差异和它们在频域中的一致性是导致轴向压缩力的变化的主要原因。

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