|本期目录/Table of Contents|

[1]颜 超,孙廉威,程子聪.深基坑开挖与周边既有建筑物改造相互影响研究[J].建筑科学与工程学报,2021,38(06):80-89.[doi:10.19815/j.jace.2021.08060]
 YAN Chao,SUN Lian-wei,CHENG Zi-cong.Study on Interaction Between Deep Foundation Pit Excavation and Reconstruction of Surrounding Existing Buildings[J].Journal of Architecture and Civil Engineering,2021,38(06):80-89.[doi:10.19815/j.jace.2021.08060]
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深基坑开挖与周边既有建筑物改造相互影响研究(PDF)
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《建筑科学与工程学报》[ISSN:1673-2049/CN:61-1442/TU]

卷:
38卷
期数:
2021年06期
页码:
80-89
栏目:
软土基坑设计与变形控制
出版日期:
2021-11-05

文章信息/Info

Title:
Study on Interaction Between Deep Foundation Pit Excavation and Reconstruction of Surrounding Existing Buildings
文章编号:
1673-2049(2021)06-0080-10
作者:
颜 超,孙廉威,程子聪
(上海建工集团股份有限公司工程研究总院,上海 201114)
Author(s):
YAN Chao, SUN Lian-wei, CHENG Zi-cong
(Engineering General Institute of Shanghai Construction Group Co.,Ltd., Shanghai 201114, China)
关键词:
深基坑 建筑物改造 相互影响 数值分析 HS模型
Keywords:
deep foundation pit reconstruction of building interaction numerical simulation HS model
分类号:
TU473
DOI:
10.19815/j.jace.2021.08060
文献标志码:
A
摘要:
基于上海体育馆、上海游泳馆改造及新建体育综合体项目,研究了紧邻深基坑既有建筑物改造与深基坑开挖之间的相互影响,通过大型有限元软件对深基坑开挖和周边既有建筑物“卸载-加载”改造进行模拟,分析了同时进行新建体育综合体深基坑开挖和上海体育馆“卸载-加载”改造两者叠加工况下的相互影响,进一步探讨了深基坑开挖与周边既有建筑物改造同时进行的最优工况。此外,在最优工况的基础上结合基坑被动区加固、围护结构刚度以及两者相互叠加对深基坑和周边建筑物的影响进行深入讨论。结果表明:最不利工况为基坑开挖至第2道支撑时对周边建筑物进行加载改造,在实际施工中应避免出现该工况; 最优工况为基坑完成第1道支撑后对周边建筑物进行卸载改造,并在基坑完成第2道支撑后对周边建筑物加载改造; 在最优工况及其他同等条件下基坑被动区加固对基坑和周边建筑物产生的影响要大于基坑围护结构强度对其产生的影响,研究结果可以为今后类似工程施工提供依据与参考。
Abstract:
Based on the reconstruction of Shanghai Gymnasium and Shanghai Natatorium and the new sports complex project, the interaction between the reconstruction of existing buildings close to the deep foundation pit and the excavation of deep foundation pit was studied. The excavation of deep foundation pit and the “unloading-loading” reconstruction of surrounding existing buildings were simulated by large finite element software, and the interaction between them were analyzed. The optimal working condition of deep foundation pit excavation and surrounding existing building reconstruction was further discussed. In addition, on the basis of the optimal working condition, combined with the reinforcement of the passive area of the foundation pit, the stiffness of the retaining structure and the influence of their superposition on the deep foundation pit and surrounding buildings were further discussed. The results show that the most unfavorable condition is the loading reconstruction of the surrounding buildings when the foundation pit is excavated to the second support, which should be avoided in the actual construction. The optimal condition is unloading reconstruction of the surrounding buildings after the first support of the foundation pit is completed, and the loading reconstruction of the surrounding buildings after the second support of the foundation pit is completed. Under the optimal working conditions and other equivalent conditions, the impact of passive area reinforcement of foundation pit on foundation pit and surrounding buildings is greater than that of foundation pit retaining structure strength. The research results can provide basis and reference for future similar engineering construction.

参考文献/References:

[1] 胡 军.深基坑开挖对邻近既有高铁桩基影响研究[J].铁道工程学报,2017(6):12-17,22.
HU Jun.Research on the Influence of Excavation of Deep Foundation Pit to Adjacent Existing High-speed Railway Bridge Pile Foundations Stability[J].Journal of Railway Engineering Society,2017(6):12-17,22.
[2]王明珉,孙广宇,朱立刚,等.深基坑开挖引起的桩基承载力损失和桩身附加拉力简化计算方法[J].建筑结构,2019,49(22):53-58.
WANG Ming-min,SUN Guang-yu,ZHU Li-gang,et al.A Simplified Calculating Method for Calculating Bearing Capacity Loss of Pile Foundation and Additional Tension Force in Piles Caused by Deep Foundation Pit Excavation[J].Building Structure,2019,49(22):53-58.
[3]刘松玉,李洪江,童立元,等.地下工程开挖卸荷既有桩基承载响应物理模拟及新进展[J].岩土工程学报,2019,41(7):1329-1338.
LIU Song-yu,LI Hong-jiang,TONG Li-yuan,et al.Model Tests and New Progress of Pile Response Due to Underground Excavations[J].Chinese Journal of Geotechnical Engineering,2019,41(7):1329-1338.
[4]张 骁,肖军华,农兴中,等.基于HS-Small模型的基坑近接桥桩开挖变形影响区研究[J].岩土力学,2018,39(增2):263-273.
ZHANG Xiao,XIAO Jun-hua,NONG Xing-zhong,et al.Analysis of Influenced Zone of Foundation Pit Excavation Adjacent to Bridge Pile Foundation Using HS-Small Constitutive Model[J].Rock and Soil Mechanics,2018,39(S2):263-273.
[5]SHI C H,CAO C Y,LEI M F,et al.Effects of Lateral Unloading on the Mechanical and Deformation Performance of Shield Tunnel Segment Joints[J].Tunnelling and Underground Space Technology,2016,51:175-188.
[6]魏 纲,洪文强,魏新江,等.基坑开挖引起邻近盾构隧道转动与错台变形计算[J].岩土工程学报,2019,41(7):1251-1259.
WEI Gang,HONG Wen-qiang,WEI Xin-jiang,et al.Calculation of Rigid Body Rotation and Shearing Dislocation Deformation of Adjacent Shield Tunnels Due to Excavation of Foundation Pits[J].Chinese Journal of Geotechnical Engineering,2019,41(7):1251-1259.
[7]郑 刚,杜一鸣,刁 钰,等.基坑开挖引起邻近既有隧道变形的影响区研究[J].岩土工程学报,2016,38(4):599-612.
ZHENG Gang,DU Yi-ming,DIAO Yu,et al.Influenced Zones for Deformation of Existing Tunnels Adjacent to Excavations[J].Chinese Journal of Geotechnical Engineering,2016,38(4):599-612.
[8]姚爱军,张剑涛,郭海峰,等.地铁盾构隧道上方基坑开挖卸荷-加载影响研究[J].岩土力学,2018,39(7):2318-2326,2335.
YAO Ai-jun,ZHANG Jian-tao,GUO Hai-feng,et al.Influence of Unloading-loading of Foundation on Shield Tunnel Underneath[J].Rock and Soil Mechanics,2018,39(7):2318-2326,2335.
[9]张陈蓉,俞 剑,黄茂松.基坑开挖对邻近地下管线影响的变形控制标准[J].岩土力学,2012,33(7):2027-2034.
ZHANG Chen-rong,YU Jian,HUANG Mao-song.Deformation Controlling Criterion of Effect on Underground Pipelines Due to Foundation Pit Excavation[J].Rock and Soil Mechanics,2012,33(7):2027-2034.
[10]王成华,段贤伟.基坑开挖对地下管线工作性状影响的数值分析[J].地下空间与工程学报,2013,9(5):1166-1172.
WANG Cheng-hua,DUAN Xian-wei.Numerical Analysis on the Influence of Foundation Pit Excavations on the Working Behavior of Underground Pipelines[J].Chinese Journal of Underground Space and Engineering,2013,9(5):1166-1172.
[11]姜 峥.基坑开挖引起邻近管线变形的理论解析[J].地下空间与工程学报,2014,10(2):362-368.
JIANG Zheng.Theoretical Analysis on Deformation of Pipeline Caused by Adjacent Foundation Pit Excavation[J].Chinese Journal of Underground Space and Engineering,2014,10(2):362-368.
[12]何小龙,杨天鸿,周云伟,等.考虑管-土分离的基坑开挖引起邻近地下管线位移分析[J].土木与环境工程学报:中英文,2019,41(6):9-16.
HE Xiao-long,YANG Tian-hong,ZHOU Yun-wei,et al.Analysis of Pipeline Displacement Induced by Adjoining Foundation Pit Excavation Considering Pipeline-soil Separation[J].Journal of Civil and Environmental Engineering,2019,41(6):9-16.
[13]郭亚磊,江辉煌.基坑被动区软土层加固宽度的数值分析[J].铁道建筑,2017(2):105-108.
GUO Ya-lei,JIANG Hui-huang.Numerical Analysis of Reinforcement Width of Soft Soil in Passive Zone of Foundation Pit[J].Railway Engineering,2017(2):105-108.
[14]康志军,谭 勇,邓 刚,等.被动区土体加固对深基坑变形影响的研究[J].长江科学院院报,2017,34(6):119-123.
KANG Zhi-jun,TAN Yong,DENG Gang,et al.Impact of Soil Reinforcement in Passive Zone on the Deformation Behaviors of Deep Excavation[J].Journal of Yangtze River Scientific Research Institute,2017,34(6):119-123.
[15]王 浩,贾敏才,杨修晗.基坑变形的尺度效应及控制措施研究[J].四川建筑科学研究,2016,42(1):69-74.
WANG Hao,JIA Min-cai,YANG Xiu-han.Influence of Size Effect on Deformation of Foundation Pit and Control Measures[J].Sichuan Building Science,2016,42(1):69-74.
[16]程 博,严 平,龚新辉,等.被动区加固对软土基坑支护影响的探讨[J].低温建筑技术,2016,38(1):100-101.
CHENG Bo,YAN Ping,GONG Xin-hui,et al.Discussion on Influence of Passive Zone Reinforcement on Soft Soil Foundation Pit Support[J].Low Temperature Architecture Technology,2016,38(1):100-101.
[17]李志伟,侯伟生,叶爱丽,等.深基坑开挖段被动区加固的位移控制效果分析[J].岩土工程学报,2012,34(增1):621-627.
LI Zhi-wei,HOU Wei-sheng,YE Ai-li,et al.Displacement Control Effect of Passive Zone Improvement at Excavation Section of Deep Foundation Pits[J].Chinese Journal of Geotechnical Engineering,2012,34(S1):621-627.
[18]谭永朝,唐雅茹,彭加强,等.基于数值分析的深基坑围护结构优化设计[J].城市轨道交通研究,2009,12(8):21-24.
TAN Yong-zhao,TANG Ya-ru,PENG Jian-qiang,et al.Optimum Design for Deep Foundation Pit Based on Numerical Value Analysis[J].Urban Mass Transit,2009,12(8):21-24.
[19]吴金东.考虑经济效益的基坑围护结构选型研究[D].上海:上海交通大学,2009.
WU Jin-dong.Investigation on Selection of Retaining Structures of Foundation Pit Based on Economic Analysis[D].Shanghai:Shanghai Jiaotong University,2009.
[20]徐中华,王卫东.敏感环境下基坑数值分析中土体本构模型的选择[J].岩土力学,2010,31(1):258-264,326.
XU Zhong-hua,WANG Wei-dong.Selection of Soil Constitutive Models for Numerical Analysis of Deep Excavations in Close Proximity to Sensitive Properties[J].Rock and Soil Mechanics,2010,31(1):258-264,326.
[21]王卫东,翁其平,胡玉银.新型逆作法结构型式的设计与应用[J].岩土工程学报,2006,28(增):1546-1551.
WANG Wei-dong,WENG Qi-ping,HU Yu-yin.Application and Design of New Top-down Excavation Method[J].Chinese Journal of Geotechnical Engineering,2006,28(S):1546-1551.
[22]徐中华,王建华,王卫东.主体地下结构与支护结构相结合的复杂深基坑分析[J].岩土工程学报,2006,28(增):1355-1359.
XU Zhong-hua,WANG Jian-hua,WANG Wei-dong.Analysis of a Complicated Deep Excavations Supported by Substructures[J].Chinese Journal of Geotechnical Engineering,2006,28(S):1355-1359.
[23]戴 斌,王卫东,徐中华.密集建筑区域中深基坑全逆作法的设计与实践[J].地下空间与工程学报,2005,1(4):579-583.
DAI Bin,WANG Wei-dong,XU Zhong-hua.Design & Practice of Deep Foundation Pit Constructed by Top-down Method in Dense-constructed Area[J].Chinese Journal of Underground Space and Engineering,2005,1(4):579-583.
[24]陈晓平,闫 军.深基坑支护结构的三维杆系有限元分析[J].岩土力学,2001,22(3):258-261.
CHEN Xiao-ping,YAN Jun.3D Pole System FEM Analysis for Bracing Structure of Deep Foundation Pit[J].Rock and Soil Mechanics,2001,22(3):258-261.
[25]DG/TJ 08-61—2018,基坑工程技术标准[S].
DG/TJ 08-61—2018,Technical Code for Excavation Engineering[S].

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[1]黄志全,李小慧,孙 怡,等.复合支护下深基坑的变形破坏和支护结构[J].建筑科学与工程学报,2015,32(03):74.
 HUANG Zhi-quan,LI Xiao-hui,SUN Yi,et al.Analysis of Deformation Failure and Supporting Structure Force Evolution of Deep Foundation Pit Under Compound Supporting[J].Journal of Architecture and Civil Engineering,2015,32(06):74.
[2]周 勇,张康康.软弱夹层对深基坑水平位移影响的数值模拟分析[J].建筑科学与工程学报,2017,34(03):9.
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[3]孙 超,郭浩天.深基坑支护新技术现状及展望[J].建筑科学与工程学报,2018,35(03):104.
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[4]李 博,王贵和,吕高峰,等.深基坑水下开挖变形特性及坑底分仓优化[J].建筑科学与工程学报,2019,36(06):95.
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[5]申 翃,徐文博,董志伟,等.深基坑剪力键支护模型优化研究[J].建筑科学与工程学报,2020,37(05):193.[doi:10.19815/j.jace.2019.10058]
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[6]康亚乐.南宁某地铁隧道风井围护结构设计优化与评价[J].建筑科学与工程学报,2021,38(06):197.[doi:10.19815/j.jace.2021.08043]
 KANG Ya-le.Design Optimization and Evaluation of Air Shaft Enclosure Structure of a Subway Tunnel in Nanning[J].Journal of Architecture and Civil Engineering,2021,38(06):197.[doi:10.19815/j.jace.2021.08043]
[7]邓 彬,张 磊,郑鹏鹏,等.深基坑开挖与内支撑调节对邻近沉井影响规律试验研究[J].建筑科学与工程学报,2023,40(05):174.[doi:10.19815/j.jace.2022.01034]
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[9]吴 波,夏 倩,刘 聪,等.复杂环境下地铁深基坑变形可靠度分析[J].建筑科学与工程学报,2024,41(05):173.[doi:10.19815/j.jace.2022.09107]
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备注/Memo

备注/Memo:
收稿日期:2021-08-21
基金项目:国家重点研发计划项目(2017YFC0805500); 上海建工集团股份有限公司重点科研项目(18JCSF-28)
作者简介:颜 超(1991-),男,江苏盐城人,工程师,工学硕士,E-mail:ychao1991@126.com。
更新日期/Last Update: 2021-11-01