Seismic and vibration control of segmented isolation layer in underground structure-diaphragm wall system

IF 8.2 1区 工程技术 Q1 ENGINEERING, CIVIL
Zhidong Gao , Mingbo Li , Mi Zhao , Xiuli Du
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引用次数: 0

Abstract

In this paper, a seismic and vibration reduction measure of subway station is developed by setting a segmented isolation layer between the sidewall of structure and the diaphragm wall. The segmented isolation layer consists of a rigid layer and a flexible layer. The rigid layer is installed at the joint section between the structural sidewall and slab, and the flexible layer is installed at the remaining sections. A diaphragm wall-segmented isolation layer-subway station structure system is constructed. Seismic and vibration control performance of the diaphragm wall-segmented isolation layer-subway station structure system is evaluated by the detailed numerical analysis. Firstly, a three-dimensional nonlinear time-history analysis is carried out to study the seismic response of the station structure by considering the effect of different earthquake motions and stiffness of segmented isolation layer. Subsequently, the vibration response of site under training loading is also studied by considering the influence of different train velocities and stiffness of the segmented isolation layer. Numerical results demonstrate that the diaphragm wall-segmented isolation layer-subway station structure system can not only effectively reduce the lateral deformation of station structure, but also reduce the tensile damage of the roof slab. On the other hand, the developed reduction measure can also significantly reduce the vertical peak displacements of site under training loading.

地下结构-地下连续墙系统中分段隔离层的抗震和振动控制
本文通过在结构侧墙和地下连续墙之间设置分段隔震层,开发了一种地铁站抗震减震措施。分段隔离层由刚性层和柔性层组成。刚性层安装在结构侧墙和楼板的连接部分,柔性层安装在其余部分。地下连续墙-分段隔离层-地铁站结构系统已建成。通过详细的数值分析,对地下连续墙-分段隔离层-地铁站结构系统的抗震和振动控制性能进行了评估。首先,通过考虑不同地震运动和分段隔离层刚度的影响,对车站结构的地震响应进行了三维非线性时程分析。随后,还考虑了不同列车速度和分段隔离层刚度的影响,研究了训练荷载下的场地振动响应。数值结果表明,地下连续墙-分段隔离层-地铁车站结构系统不仅能有效减少车站结构的侧向变形,还能减少顶板的拉伸破坏。另一方面,所开发的减震措施还能显著降低训练荷载作用下场地的竖向峰值位移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Underground Space
Underground Space ENGINEERING, CIVIL-
CiteScore
10.20
自引率
14.10%
发文量
71
审稿时长
63 days
期刊介绍: Underground Space is an open access international journal without article processing charges (APC) committed to serving as a scientific forum for researchers and practitioners in the field of underground engineering. The journal welcomes manuscripts that deal with original theories, methods, technologies, and important applications throughout the life-cycle of underground projects, including planning, design, operation and maintenance, disaster prevention, and demolition. The journal is particularly interested in manuscripts related to the latest development of smart underground engineering from the perspectives of resilience, resources saving, environmental friendliness, humanity, and artificial intelligence. The manuscripts are expected to have significant innovation and potential impact in the field of underground engineering, and should have clear association with or application in underground projects.
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