力学与实践2024,Vol.46Issue(5) :975-981.DOI:10.6052/1000-0879-23-559

大直径盾构隧道预制中隔墙顶部节点整体受力分析研究

ANALYSIS OF MECHANICAL PERFORMANCE ON TOP CONNECTOR OF PRECAST PARTITION WALLS IN LARGE-DIAMETER SHIELD TUNNELS

唐泽人 于朋臣 朱元昌 杜亚南 陈辰 柳献
力学与实践2024,Vol.46Issue(5) :975-981.DOI:10.6052/1000-0879-23-559

大直径盾构隧道预制中隔墙顶部节点整体受力分析研究

ANALYSIS OF MECHANICAL PERFORMANCE ON TOP CONNECTOR OF PRECAST PARTITION WALLS IN LARGE-DIAMETER SHIELD TUNNELS

唐泽人 1于朋臣 2朱元昌 1杜亚南 2陈辰 2柳献1
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作者信息

  • 1. 同济大学土木工程学院,上海 200092
  • 2. 中铁十四局集团大盾构工程有限公司,南京 211800
  • 折叠

摘要

市域线大直径盾构隧道中隔墙主要承受由列车行驶产生的水平风压载荷,基本不承受竖向外载荷,使得其顶部节点是重要结构,需要对其力学性能进行研究.本文依托上海市机场联络线,介绍了其中隔墙顶部节点构造信息及数值模型等背景资料,随后阐述了不同构造下顶部节点计算分析与结果,最后对可能出现的顶部节点失效情况进行了受力分析.结果表明:今后中隔墙设计可按照连接件与中隔墙间无间隙的情况进行计算;当前连接件的焊缝、黏结强度均有一定安全储备;在可能出现顶部连接件掉落的情况下中隔墙会产生最大42.17 mm的侧向变形.

Abstract

Partition walls in the large-diameter shield tunnels of city line mainly bear the horizontal wind pressure generated by trains,and basically do not bear the vertical external load.The above reason makes their top connectors significant components,whose mechanical properties need to be further studied.On the base of Shanghai Airport Link Line,this paper firstly introduces the background detailed including the element of top connector and numerical simulation information.In addition,calculation process of each component of the top connector has been elaborated.Eventually,the stress of top connectors under accidental working condition is calculated and analyzed.The results indicate that,in the future,calculation of the top connector can be carried in the curriculum of no gap between the partition walls and connector,and current design of the weld and bond strength meet the requirements with a certain safety reserve.Moreover,a maximum lateral deformation of 42.17 mm will happen in the partition wall under accidental dropping of top connector.

关键词

大直径盾构隧道/预制中隔墙/顶部节点/力学性能/数值模拟

Key words

large-diameter shield tunnels/prefabricated partition walls/top connector/mechanical performance/numerical simulation

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基金项目

中铁十四局集团有限公司科研课题(202214jtky0069)

出版年

2024
力学与实践
中国力学学会 中国科学院力学研究所

力学与实践

CSTPCD
影响因子:0.452
ISSN:1000-0879
参考文献量13
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