Settlement prediction and behaviour of pile foundations in deep clayey soil deposits

Jian-lin Ma , Hussein Yousif Aziz , Chun-hui Su , Cong Shi

Journal of Central South University ›› 2014, Vol. 21 ›› Issue (4) : 1554 -1564.

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Journal of Central South University ›› 2014, Vol. 21 ›› Issue (4) : 1554 -1564. DOI: 10.1007/s11771-014-2096-z
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Settlement prediction and behaviour of pile foundations in deep clayey soil deposits

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Abstract

A new measurement technique is used to determine the settlement of bridge pile foundation and the thickness of deep compressed soft layer. The finite element Plaxis 3D foundation program is used in the analysis with a proposed empirical equation to modify the input parameters represented by the soil compression modulus. The results of the numerical analysis using the proposed empirical equation provide insight to the settlement analysis of pile groups in soft clayey soils; consequently, the finite element Plaxis 3D program can be a useful tool for numerical analysis. The numerical analysis is modified by adjusting the calculation of compression modulus from those obtained under pressure between 100–200 kPa by which the results of the settlement are modified and thus matching the realistic measurements. The absolute error is 3 mm which is accepted compared with the last researches. This scenario can be applied for the similar problems in the theoretical applications of deep foundations.

Keywords

compression modulus / 3D finite elements / settlement monitoring / soil plasticity

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Jian-lin Ma, Hussein Yousif Aziz, Chun-hui Su, Cong Shi. Settlement prediction and behaviour of pile foundations in deep clayey soil deposits. Journal of Central South University, 2014, 21(4): 1554-1564 DOI:10.1007/s11771-014-2096-z

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References

[1]

YangM-h, ZhangX-w, ZhaoM-hua. A simplified approach for settlement calculation of pile groups considering pile-to-pile interaction in layered soils [J]. Journal of Central South University of Technology, 2011, 18: 2131-2136

[2]

WangX, ZhouS-h, GuX-s, ChenD-peng. Testing study on settlement of treated soft soil ground of railway [J]. Chinese Journal of Rock Mechanics and Engineering, 2005, 24(5): 905-910

[3]

AzhariB, AzlinaN, HamonanganI S. Piled raft over soft marine clay: Comparison of in-situ measurement and numerical analyses [C]. National Postgraduate Conference (NPC), 2011, Seri Iskandar, Perak Malaysia, IEEE Press: 1-7

[4]

ChenZ-j, ZhangN-n, ZhangX-wen. Settlement monitoring system of pile-group foundation [J]. Journal of Central South University of Technology, 2011, 18: 2122-2130

[5]

ZhaoM-h, ZhangLing. Settlement calculation for long-short composite piled raft foundation [J]. Journal of Central South University of Technology, 2006, 13(6): 749-754

[6]

BakholdinB V, ChashchikhinaL P. Determination of the compression modulus of soils from compression-test data for calculation of pile-foundation settlements [J]. Soil Mechanics and Foundation Engineering, 1999, 36(1): 9-12

[7]

TB 10002. 5 - 2005/J 464. Code for Design on Subsoil and Foundation of Railway Bridge and Culvert [S].

[8]

China Academy of Railway Sciences.A total of 200 kilometer per hour passenger railway interim design providions code [R], 2007, Beijing, Republic of China Ministry of Railways

[9]

HamblyE CBridge deck behavior [M], 1991, UK, Taylor and Francis: 281-299

[10]

XueF-c, MaJ-l, YanL-ping. Three-dimensional FEM analysis of bridge pile group settlement in soft soils [C]. Geotechnical Special Publication No. 220, ASCE, 2011135-143

[11]

DingM-ji. Numerical simulation on the post-construction settlement of CFG pile-slab composite foundation in high-speed railway [J]. China Railway Science, 2008, 29(3): 1-6

[12]

TschuchniggF, SchweigerH F. Study of a complex deep foundation system using 3D finite element analysis [C]. Proceedings of the 7th European Conference on Numerical Methods in Geotechnical Engineering, 2010, Trondheim, Norway, CRC Press: 679-684

[13]

CuiC-y, LuanM-t, LiM-guo. A study on time-effects of piled raft system by using computational methods [C]. Geotechnical Special Publication, Deep Foundations and Geotechnical In Situ Testing-Proceedings of the 2010 Geo Shanghai International Conference, 2010, Shanghai, China, ASCE: 42-51

[14]

LeeS W, CheangW W L, SwolfsW M, BrinkgreveR B J. Modelling of piled rafts with different pile models [C]. Proceedings of the 7th European Conference on Numerical Methods in Geotechnical Engineering, 2010, Trondheim, Norway, CRC Press: 637-642

[15]

LiS-w, GaoH-d, YangT-deng. Monitoring and numerical analysis of a deep foundation pit [J]. Chinese Journal of Geotechnical Engineering, 2011, 33: 284-291

[16]

FarrokhzadF, ChoobbastiA J. Assessing the load size effect in the soil (under single foundation) using finite element method [J]. International Journal of Soil Science, 2011209-216

[17]

British Standard 5930:1999. Code of practice for site investigations [S].

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