Low Carbon Optimization of Deep Foundation Pit Support in Undulating Strata

Author:

Liu Yun1,Lai Jie1,Wang Wei1,Wu Xiong2,Xu Jiangbo2ORCID,Xie Haodong2,Zhang Zixuan2

Affiliation:

1. Xi’an Research Institute of High-Tech, Xi’an 710025, China

2. School of Highway, Chang’an University, Xi’an 710064, China

Abstract

To mitigate carbon emissions during the construction of deep foundation pit support in undulating strata, a theoretical calculation approach was utilized to design and compute the foundation pit support for Qingdao’s Metro Line 4. On this basis, the numerical simulation method is used to optimize the design scheme of foundation pit support with the surface deformation and the stress of the support structure. The results of numerical simulation show that the final ground settlement is 5.26 mm, the maximum horizontal displacement is 0.2836 mm, and the corresponding maximum shear force of the retaining pile is 250 kN, which is obviously superior to the ground settlement of 55 mm, 33 mm, and 1341.03 kN in the theoretical design. The use of simulation software before the construction and support of deep foundation pit excavation can reduce resource waste and achieve low-carbon design while ensuring construction safety.

Funder

National Natural Science Foundation of China

Science and Technology Plan Project of Housing and Urban-Rural Construction in Shaanxi Province

Foundation of Hubei Key Laboratory of Blasting Engineering

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference22 articles.

1. Effect of foundation piles on excavation stability and its calculation;Zheng;Chin. J. Geotech. Eng.,2017

2. Basal-heave stability of excavations considering groundwater level and pore water pressure fluctuations by upper bound method;Zhang;Rock Soil Mech.,2011

3. Lv, N., and Hui, M.L. (2015, January 22–23). The research of the single row piles designing in deep foundation pit. Proceedings of the 2015 International Conference on Advanced Engineering Materials and Technology, Guangzhou, China.

4. Deep foundation pit supporting structure considering pile-soil interaction Elastic foundation beam method;Zhang;Highw. Traffic Technol. (Appl. Technol. Ed.),2020

5. Elastic Foundation Beam Solution of Tensile Flexible Retaining Wall;Xu;Int. J. Steel Struct.,2022

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