Consolidation settlement of vertically loaded pile groups in multilayered poroelastic soils

被引:4
|
作者
Senjuntichai, T. [1 ]
Sornpakdee, N. [2 ]
Keawsawasvong, S. [3 ]
Phulsawat, B. [1 ]
Rajapakse, R. K. N. D. [4 ,5 ]
机构
[1] Chulalongkorn Univ, Fac Engn, Ctr Excellence Appl Mech & Struct, Dept Civil Engn, Bangkok 10330, Thailand
[2] Rajamangala Univ Technol Srivijaya, Coll Ind Technol & Management, Songkhla 90000, Thailand
[3] Thammasat Univ, Thammasat Sch Engn, Dept Civil Engn, Pathum Thani 12120, Thailand
[4] Sri Lanka Inst Informat Technol, Dept Civil Engn, Malabe, Sri Lanka
[5] Simon Fraser Univ, Sch Engn Sci, Burnaby, BC V5A 1S6, Canada
关键词
Consolidation; Multilayered soils; Pile groups; Poroelasticity; Soil-structure interaction; TIME-DEPENDENT RESPONSE; POROMECHANICAL RESPONSE; ELASTIC PILE; STIFFNESS;
D O I
10.1016/j.trgeo.2022.100904
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Pile groups are commonly used as the foundations of many structures including those used in transportation infrastructures. Consolidation settlement of a pile foundation is an important design parameter. A theoretical model is developed in this study to estimate the consolidation settlement and axial load transfer of vertically loaded pile groups in multilayered poroelastic soils. The multilayered saturated soil is modeled according to Biot's poroelasticity theory. In order to determine quasi-static response of pile groups, the interaction problem is first formulated in the Laplace transform domain. Vertical displacement compatibility is enforced at the pile-soil interface to simulate the pile group-soil interaction. Axial deformation of each pile is represented by an expo-nential series with undetermined coefficients, which are obtained from a variational approach. Vertical displacement influence functions due to a buried uniform vertical load applied to the layered soil are required in the formulation. The application of an exact stiffness matrix method yields the required influence functions. Time-domain solutions are obtained by employing a numerical Laplace inversion method. Numerical results for time-dependent vertical stiffness and consolidation settlement are presented for different pile group configura-tions, layer profiles, pile elastic moduli and pile lengths.
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页数:12
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