Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress

The steel assembled support structure of a foundation pit can be assembled easily with high strength and recycling value. Steel’s performance is significantly affected by the surrounding temperature due to its temperature sensitivity. Here, a full-scale experiment was conducted to study the influenc...

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Main Authors: Fu Wang, Guijun Shi, Wenbo Zhai, Bin Li, Chao Zhang, Hongyuan Fang
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/5/2225
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spelling doaj-497e9a0a4ef645929727912d3ae4afb12021-03-04T00:03:47ZengMDPI AGApplied Sciences2076-34172021-03-01112225222510.3390/app11052225Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal StressFu Wang0Guijun Shi1Wenbo Zhai2Bin Li3Chao Zhang4Hongyuan Fang5School of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, ChinaCCCC First Highway Consultants Co., Ltd., Xi’an 710065, ChinaSchool of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, ChinaSchool of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, ChinaSchool of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, ChinaSchool of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, ChinaThe steel assembled support structure of a foundation pit can be assembled easily with high strength and recycling value. Steel’s performance is significantly affected by the surrounding temperature due to its temperature sensitivity. Here, a full-scale experiment was conducted to study the influence of temperature on the internal force and deformation of supporting structures, and a three-dimensional finite element model was established for comparative analysis. The test results showed that under the temperature effect, the deformation of the central retaining pile was composed of rigid rotation and flexural deformation, while the adjacent pile of central retaining pile only experienced flexural deformation. The stress on the retaining pile crown changed little, while more stress accumulated at the bottom. Compared with the crown beam and waist beam 2, the stress on waist beam 1 was significantly affected by the temperature and increased by about 0.70 MPa/°C. Meanwhile, the stress of the rigid panel was greatly affected by the temperature, increasing 78% and 82% when the temperature increased by 15 °C on rigid panel 1 and rigid panel 2, respectively. The comparative simulation results indicated that the bending moment and shear strength of pile 1 were markedly affected by the temperature, but pile 2 and pile 3 were basically stable. Lastly, as the temperature varied, waist beam 2 had the largest change in the deflection, followed by waist beam 1; the crown beam experienced the smallest change in the deflection.https://www.mdpi.com/2076-3417/11/5/2225assembled supporting structurefoundation pitthermal stressfull-scale testnumerical simulation
collection DOAJ
language English
format Article
sources DOAJ
author Fu Wang
Guijun Shi
Wenbo Zhai
Bin Li
Chao Zhang
Hongyuan Fang
spellingShingle Fu Wang
Guijun Shi
Wenbo Zhai
Bin Li
Chao Zhang
Hongyuan Fang
Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress
Applied Sciences
assembled supporting structure
foundation pit
thermal stress
full-scale test
numerical simulation
author_facet Fu Wang
Guijun Shi
Wenbo Zhai
Bin Li
Chao Zhang
Hongyuan Fang
author_sort Fu Wang
title Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress
title_short Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress
title_full Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress
title_fullStr Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress
title_full_unstemmed Internal Force on and Deformation of Steel Assembled Supporting Structure of Foundation Pit under Thermal Stress
title_sort internal force on and deformation of steel assembled supporting structure of foundation pit under thermal stress
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-03-01
description The steel assembled support structure of a foundation pit can be assembled easily with high strength and recycling value. Steel’s performance is significantly affected by the surrounding temperature due to its temperature sensitivity. Here, a full-scale experiment was conducted to study the influence of temperature on the internal force and deformation of supporting structures, and a three-dimensional finite element model was established for comparative analysis. The test results showed that under the temperature effect, the deformation of the central retaining pile was composed of rigid rotation and flexural deformation, while the adjacent pile of central retaining pile only experienced flexural deformation. The stress on the retaining pile crown changed little, while more stress accumulated at the bottom. Compared with the crown beam and waist beam 2, the stress on waist beam 1 was significantly affected by the temperature and increased by about 0.70 MPa/°C. Meanwhile, the stress of the rigid panel was greatly affected by the temperature, increasing 78% and 82% when the temperature increased by 15 °C on rigid panel 1 and rigid panel 2, respectively. The comparative simulation results indicated that the bending moment and shear strength of pile 1 were markedly affected by the temperature, but pile 2 and pile 3 were basically stable. Lastly, as the temperature varied, waist beam 2 had the largest change in the deflection, followed by waist beam 1; the crown beam experienced the smallest change in the deflection.
topic assembled supporting structure
foundation pit
thermal stress
full-scale test
numerical simulation
url https://www.mdpi.com/2076-3417/11/5/2225
work_keys_str_mv AT fuwang internalforceonanddeformationofsteelassembledsupportingstructureoffoundationpitunderthermalstress
AT guijunshi internalforceonanddeformationofsteelassembledsupportingstructureoffoundationpitunderthermalstress
AT wenbozhai internalforceonanddeformationofsteelassembledsupportingstructureoffoundationpitunderthermalstress
AT binli internalforceonanddeformationofsteelassembledsupportingstructureoffoundationpitunderthermalstress
AT chaozhang internalforceonanddeformationofsteelassembledsupportingstructureoffoundationpitunderthermalstress
AT hongyuanfang internalforceonanddeformationofsteelassembledsupportingstructureoffoundationpitunderthermalstress
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