Research on the Collapse Coefficient of Collapsible Loess under Unloading

In the geogenetic overburden excavation of underground space projects (such as comprehensive pipe corridors or subways), the foundation stress is in an unloading state. The effect(s) from the unloading on the coefficient of subsidence in the loess area should be considered. In this study, to explore...

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Main Authors: Bin Zhi, Pingping Wei, Xiaochan Wang, Zengyue Li, Yilong Ren, Hui Zhang, Jinhua Li, Botuan Deng
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2021/6672301
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spelling doaj-29d1b9745eef4e46ad2349a0c51d89602021-02-22T00:00:28ZengHindawi LimitedAdvances in Civil Engineering1687-80942021-01-01202110.1155/2021/6672301Research on the Collapse Coefficient of Collapsible Loess under UnloadingBin Zhi0Pingping Wei1Xiaochan Wang2Zengyue Li3Yilong Ren4Hui Zhang5Jinhua Li6Botuan Deng7School of Architecture and Civil EngineeringSchool of Architecture and Civil EngineeringSchool of Architecture and Civil EngineeringSchool of Architecture and Civil EngineeringThe Logistics Support Department of the PLA Military Commission of the People’s Liberation Army Resettlement Housing Support CenterSchool of Architecture and Civil EngineeringSchool of Architecture and Civil EngineeringSchool of Architecture and Civil EngineeringIn the geogenetic overburden excavation of underground space projects (such as comprehensive pipe corridors or subways), the foundation stress is in an unloading state. The effect(s) from the unloading on the coefficient of subsidence in the loess area should be considered. In this study, to explore the effect of unloading on the collapsibility of loess, the collapsible loess in the Guanzhong area was considered as the research object. An expression for the unloading collapse coefficient was established based on the unloading stress ratio, unloading collapse ratio, and other parameters. The influence of the unloading on the loess collapse coefficient was studied using an indoor collapsibility test, and the function form and parameters for the expression were determined. As combined with the field test, the accuracy of the expression for the unloading coefficient was verified based on the test value for the specific collapsibility, calculated value for the specific collapsibility, and calculated value for the unloading collapsibility.http://dx.doi.org/10.1155/2021/6672301
collection DOAJ
language English
format Article
sources DOAJ
author Bin Zhi
Pingping Wei
Xiaochan Wang
Zengyue Li
Yilong Ren
Hui Zhang
Jinhua Li
Botuan Deng
spellingShingle Bin Zhi
Pingping Wei
Xiaochan Wang
Zengyue Li
Yilong Ren
Hui Zhang
Jinhua Li
Botuan Deng
Research on the Collapse Coefficient of Collapsible Loess under Unloading
Advances in Civil Engineering
author_facet Bin Zhi
Pingping Wei
Xiaochan Wang
Zengyue Li
Yilong Ren
Hui Zhang
Jinhua Li
Botuan Deng
author_sort Bin Zhi
title Research on the Collapse Coefficient of Collapsible Loess under Unloading
title_short Research on the Collapse Coefficient of Collapsible Loess under Unloading
title_full Research on the Collapse Coefficient of Collapsible Loess under Unloading
title_fullStr Research on the Collapse Coefficient of Collapsible Loess under Unloading
title_full_unstemmed Research on the Collapse Coefficient of Collapsible Loess under Unloading
title_sort research on the collapse coefficient of collapsible loess under unloading
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8094
publishDate 2021-01-01
description In the geogenetic overburden excavation of underground space projects (such as comprehensive pipe corridors or subways), the foundation stress is in an unloading state. The effect(s) from the unloading on the coefficient of subsidence in the loess area should be considered. In this study, to explore the effect of unloading on the collapsibility of loess, the collapsible loess in the Guanzhong area was considered as the research object. An expression for the unloading collapse coefficient was established based on the unloading stress ratio, unloading collapse ratio, and other parameters. The influence of the unloading on the loess collapse coefficient was studied using an indoor collapsibility test, and the function form and parameters for the expression were determined. As combined with the field test, the accuracy of the expression for the unloading coefficient was verified based on the test value for the specific collapsibility, calculated value for the specific collapsibility, and calculated value for the unloading collapsibility.
url http://dx.doi.org/10.1155/2021/6672301
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