Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions

A deep foundation pit in a station of the Hangzhou subway is adjacent to new high-rise residential buildings on the north side and to the Evergrande foundation pit being excavated on the south side. This work considers the excavation of the foundation pit in the subway station as the research subjec...

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Main Authors: Wei Gang, Zhou Xin-Xin, Xu Yin-Feng, Zhang Li, Zhang Xin-Hai
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2020/6675531
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spelling doaj-fd680f63ede04847b64e463324d7ec9d2021-01-04T00:00:55ZengHindawi LimitedMathematical Problems in Engineering1563-51472020-01-01202010.1155/2020/6675531Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading ConditionsWei Gang0Zhou Xin-Xin1Xu Yin-Feng2Zhang Li3Zhang Xin-Hai4Department of Civil EngineeringCollege of Civil Engineering and ArchitectureHangzhou Survey and Design InstituteCollege of Chemical EngineeringCollege of OceanA deep foundation pit in a station of the Hangzhou subway is adjacent to new high-rise residential buildings on the north side and to the Evergrande foundation pit being excavated on the south side. This work considers the excavation of the foundation pit in the subway station as the research subject, focuses on the difference of the deformation and Earth pressure between the north side and the south side of the foundation pit under these special working conditions through the analysis of the measured data, and compares it with an ordinary foundation pit. Analyzing the measured data reveals that the horizontal displacement of the retaining wall and the ground settlement are far larger on the north side than on the south side, and both often exceed the deformation alarm value; the deformation of the ordinary foundation pit is between the deformation of the overloaded (north) side and that of the unloaded (south) side of the foundation pit. Moreover, the maximum rate of the horizontal creep of the soil and the maximum rate of the creep caused by the ground settlement on the north side of the foundation pit are larger than those on the south side of the foundation pit; the maximum rate of the horizontal creep of the ordinary foundation pit is between the two. The active Earth pressure on the pit wall on the north side is higher than that on the south side of the foundation pit, and because of the surrounding unloading, passive Earth pressure is generated at the bottom of the pit wall on the south side of the foundation pit, which causes it to shift to the outside of the foundation pit. The settlement of the surrounding high-rise buildings and the settlement of the columns are all within the range of the alarm values; also, the buildings settle evenly. Due to the excavation and unloading on the south side of the foundation pit, the uplift of the columns is not considerable.http://dx.doi.org/10.1155/2020/6675531
collection DOAJ
language English
format Article
sources DOAJ
author Wei Gang
Zhou Xin-Xin
Xu Yin-Feng
Zhang Li
Zhang Xin-Hai
spellingShingle Wei Gang
Zhou Xin-Xin
Xu Yin-Feng
Zhang Li
Zhang Xin-Hai
Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions
Mathematical Problems in Engineering
author_facet Wei Gang
Zhou Xin-Xin
Xu Yin-Feng
Zhang Li
Zhang Xin-Hai
author_sort Wei Gang
title Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions
title_short Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions
title_full Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions
title_fullStr Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions
title_full_unstemmed Deformation Behavior of Deep Foundation Pit under Both Overloading and Unloading Conditions
title_sort deformation behavior of deep foundation pit under both overloading and unloading conditions
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2020-01-01
description A deep foundation pit in a station of the Hangzhou subway is adjacent to new high-rise residential buildings on the north side and to the Evergrande foundation pit being excavated on the south side. This work considers the excavation of the foundation pit in the subway station as the research subject, focuses on the difference of the deformation and Earth pressure between the north side and the south side of the foundation pit under these special working conditions through the analysis of the measured data, and compares it with an ordinary foundation pit. Analyzing the measured data reveals that the horizontal displacement of the retaining wall and the ground settlement are far larger on the north side than on the south side, and both often exceed the deformation alarm value; the deformation of the ordinary foundation pit is between the deformation of the overloaded (north) side and that of the unloaded (south) side of the foundation pit. Moreover, the maximum rate of the horizontal creep of the soil and the maximum rate of the creep caused by the ground settlement on the north side of the foundation pit are larger than those on the south side of the foundation pit; the maximum rate of the horizontal creep of the ordinary foundation pit is between the two. The active Earth pressure on the pit wall on the north side is higher than that on the south side of the foundation pit, and because of the surrounding unloading, passive Earth pressure is generated at the bottom of the pit wall on the south side of the foundation pit, which causes it to shift to the outside of the foundation pit. The settlement of the surrounding high-rise buildings and the settlement of the columns are all within the range of the alarm values; also, the buildings settle evenly. Due to the excavation and unloading on the south side of the foundation pit, the uplift of the columns is not considerable.
url http://dx.doi.org/10.1155/2020/6675531
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AT zhangli deformationbehaviorofdeepfoundationpitunderbothoverloadingandunloadingconditions
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