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Research Articles

Interaction analysis of two floating granular piled raft units

ORCID Icon, ORCID Icon &
Pages 1-18 | Received 28 Feb 2022, Accepted 10 Oct 2022, Published online: 28 Oct 2022
 

ABSTRACT

The pile–soil–raft interactions remain a daunting problem in the study of piled-raft foundations. A simple analytical continuum approach is implemented in the present research to analyse the interaction between two granular floating piled-rafts. The formulation uses the equations of Mindlin and Boussinesq for the estimation of the displacements for forces in the interior and on the surface of the continuum. Settlement influence factor, interaction factor, the normalised shear stresses along the granular pile (GP)-soil interface, the percentage load shared by GP, the percentage load transferred to the GP base, and the normalised contact pressure distribution underneath the raft are evaluated and presented for design.

Acknowledgements

The first author is highly grateful to the late Dr. Vaibhaw Garg and would like to acknowledge the suggestions and discussion. His appreciation and positive attitude about the research work have played a significant role.

Disclosure statement

No potential conflict of interest was reported by the author(s).

Author contributions

Jitendra Kumar Sharma and Ashish Solanki formulated the original idea, which was also discussed by Madhira R. Madhav. After his valuable suggestions all authors agreed with the concept of the paper. Ashish Solanki performed analysis. Ashish Solanki wrote the manuscript with the help of Jitendra Kumar Sharma, which is further, edited and reviewed by Madhira R. Madhav and extended the work as per his instructions.

Nomenclature

GPR=

Granular piled raft

SIF=

Settlement influence factor

L=

Length of GP

d=

Diameter of GP = (2a)

s/d=

Spacing of GPs

n=

Number of elements of GP

L/d=

Relative length of GP

D=

Diameter of raft

D/d=

Relative size of raft

P=

Load on granular piled raft

q=

Loading intensity

Egpgp=

Deformation modulus and Poisson’s Ratio of GP material

Ess=

Deformation modulus and Poisson’s Ratio of soil

Kgp= (Egp/Es)=

Relative stiffness of GP

τ=

Shear stresses at GP-soil interface

τ*= τ(πdL)/P=

Normalized shear stress of a GP w.r.t. total load

pr=

Raft stresses

pb=

Pile base pressure

Z =(z/L)=

Normalized depth of GP

I2GPR=

Settlement Influence factor (SIF)

IZ=

Settlement Influence factor for any depth

PP=

Load on pile

PR=

Load on raft

PB=

Load on base of GP

(PP/P)×100=

Percentage load transfer to the pile

(PR/P)×100=

Percentage load transfer to the raft

(PB/P)×100=

Percentage load transfer to the base

Sps=

Vertical soil displacement vector at GP nodes

ρps=

Normalized vertical soil displacement vector at GP nodes

Ippf=

Displacement influence coefficients for the effect of GP element shear stresses and base pressure on settlement of nodes of pile elements

Iprf=

Displacement influence coefficients for the effect of raft stresses on settlement of nodes of pile elements

Srs=

Vertical soil displacement vector at raft nodes

ρrs=

Normalized vertical soil displacement vector at raft nodes

Irpf=

Displacement influence coefficients for the raft nodes due to elemental shear stresses on GP

Irrf=

Displacement influence coefficients for the raft nodes due to raft stresses

α2 r=

Interaction coefficient for two group granular piled raft system

Additional information

Funding

No funding was received to assist with the preparation of this manuscript.

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