DocumentCode
3217582
Title
The finite element simulation and analysis for ∞—shaped super deep foundation pit
Author
Duan Chao-jing
Author_Institution
Design & Consulting Co., Shanghai Geotechnical Investigations & Design Inst. Co., Ltd., Shanghai, China
fYear
2011
fDate
22-24 April 2011
Firstpage
6294
Lastpage
6297
Abstract
In the field of bridge construction, some anchorage foundation pit with the large plane dimension and the deep excavation depth is found in the construction of the long-span suspension bridge, the mechanics ∞ of -shaped super deep foundation pit is more complex among them, and is not analysed in the domestic engineering project. Based on the example of ∞ - shaped super deep foundation pit in this paper, the excavation process of the deep pit of south anchorage foundation of a bridge is simulated, the simulation is then analyzed and compared with the field measurements of the foundation pit. The results reveal that the vertical stress and the lateral displacement are obviously reduced by the arching effect of -shaped underground diaphragm wall, the vertical stress is very small compared with the ring stress; the ring stress of the inside and outside underground diaphragm wall is close, and the compressive stress is main; the ring stress of the lining is the ring tensional stress mainly, which reveals that the construction factor has significant influences on the mechanics of the lining. These conclusions provide the theoretical basis and the practical references for the design optimization and the construction control of the similar foundation pit engineering.
Keywords
anchors; bridges (structures); compressive strength; construction; finite element analysis; foundations; geotechnical engineering; linings; rings (structures); anchorage foundation pit; bridge construction; compressive stress; deep excavation depth; design optimization; field measurements; finite element simulation; lateral displacement; lining; long-span suspension bridge; ring tensional stress; super deep foundation pit; underground diaphragm wall; vertical stress; Analytical models; Bridges; Companies; Finite element methods; Shape measurement; Stress; Stress measurement; ∞—shaped super deep foundation pit; excavation and support; the finite element; underground diaphragm wall;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Technology and Civil Engineering (ICETCE), 2011 International Conference on
Conference_Location
Lushan
Print_ISBN
978-1-4577-0289-1
Type
conf
DOI
10.1109/ICETCE.2011.5774343
Filename
5774343
Link To Document