ABSTRACT

This paper presents the findings from a model experimental setup designed and fabricated for conducting single gravity (1-g) model experiments on model aluminum instrumented piles embedded in synthetic rock subjected to both independent vertical–compressive and lateral loading and combined vertical–compressive and lateral loading. Synthetic rock was prepared based on a mix design that can simulate the strength and modulus of soft rocks. Model tests were carried out on single piles of different socketing lengths (L/D ratios: 6, 9, and 12). Combined loading tests were done such that the resultant of the vertical–compressive and lateral loads was at constant inclinations (30° and 60°). Piles with smooth and rough surfaces were simulated for examining the effect of the pile–rock roughness profile. The vertical load–settlement and the lateral load–deflection response were measured from the tests. The bending behavior of piles under both independent and combined loading was also measured. The deflection profile of the rock-socketed pile was obtained by tracing the tested/failed piles after extracting them. The axial and lateral resistance of the rock-socketed piles are interpreted and discussed. It is observed that the rock-socketed piles behave in a distinctly different manner under combined loading compared with independent loading.

References

1.
Ayothiraman
,
R.
and
A.
 
Boominathan
.
2013
. “
Depth of Fixity of Piles in Clay under Dynamic Lateral Load
.”
Geotechnical and Geological Engineering
31
, no. 
2
(April):
447
461
.
2.
Ayothiraman
,
R.
and
K. M.
 
Reddy
.
2014
. “
Model Experiments on Pile Behaviour in Loose-Medium Dense Sand under Combined Uplift and Lateral Loads
.” In
Geo-Shanghai 2014: Tunneling and Underground Construction
, edited by
W.
 
Ding
and
X.
 
Li
,
633
643
.
Reston, VA
:
American Society of Civil Engineers
. https://doi.org/10.1061/9780784413449.061
3.
Boominathan
,
A.
and
R.
 
Ayothiraman
.
2007
. “
An Experimental Study on Static and Dynamic Bending Behaviour of Piles in Soft Clay
.”
Geotechnical and Geological Engineering
25
, no. 
2
(April):
177
189
.
4.
Bureau of Indian Standards
.
1998
.
Design and Construction of Bored Cast-In-Situ Piles Founded on Rocks—Guidelines
. IS 14593:1998.
New Delhi, India
:
Bureau of Indian Standards
.
5.
Carter
,
J. P.
and
F. H.
 
Kulhawy
.
1988
.
Analysis and Design of Drilled Shaft Foundations Socketed into Rock, Report EL-5918
.
Palo Alto, CA
:
Electric Power Research Institute
.
6.
Dai
,
G. L.
,
R.
 
Salgado
,
W. M.
 
Gong
, and
M. X.
 
Zhu
.
2017
. “
The Effect of Sidewall Roughness on the Shaft Resistance of Rock-Socketed Piles
.”
Acta Geotechnica
12
, no. 
2
(April):
429
440
.
7.
Dou
,
H.
and
P. M.
 
Byrne
.
1996
. “
Dynamic Response of Single Piles and Soil-Pile Interaction
.”
Canadian Geotechnical Journal
33
, no. 
1
(March):
80
96
.
8.
El-Kelesh
,
A. M.
,
T.
 
Matsui
, and
K.-I.
 
Tokida
.
2012
. “
Field Investigation into Effectiveness of Compaction Grouting
.”
Journal of Geotechnical and Geoenvironmental Engineering
138
, no. 
4
(April):
451
460
.
9.
Fu
,
J. Y.
,
J. S.
 
Yang
,
S. T.
 
Zhu
, and
Y. F.
 
Shi
.
2017
. “
Performance of Jet-Grouted Partition Walls in Mitigating the Effects of Shield-Tunnel Construction on Adjacent Piled Structures
.”
Journal of Performance of Constructed Facilities
31
, no. 
2
(April):
04016096
.
10.
Gabr
,
M. A.
,
R. H.
 
Borden
,
K. H.
 
Cho
,
S.
 
Clark
, and
J. B.
 
Nixon
.
2002
.
P-y Curves for Laterally Loaded Drilled Shafts Embedded in Weathered Rock, FHWA/NC/2002-08
.
Raleigh, NC
:
North Carolina State University
.
11.
Gao
,
R.
,
Y. J.
 
Zeng
, and
B.
 
Zhu
.
2011
. “
Centrifuge Model Testing on Super-Long Rock-Socketed Bored Piles under Vertical Loading
.”
Geomechanics and Geoengineering
6
, no. 
1
:
21
29
.
12.
Georgiadis
,
K.
and
M.
 
Georgiadis
.
2010
. “
Undrained Lateral Pile Response in Sloping Ground
.”
Journal of Geotechnical and Geoenvironmental Engineering
136
, no. 
11
(November):
1489
1500
.
13.
German National Organization for Standardization
.
1990
.
Bored Cast-in-Place Piles - Formation, Design and Bearing Capacity
(Withdrawn). DIN 4014:1990-03.
Berlin
:
German National Organization for Standardization
.
14.
Meyerhof
,
G. G.
,
S. K.
 
Mathur
, and
A. J.
 
Valsangkar
.
1981
. “
Lateral Resistance and Deflection of Rigid Walls and Piles in Layered Soils
.”
Canadian Geotechnical Journal
18
, no. 
2
(May):
159
170
.
15.
Indraratna
,
B.
1990
. “
Development and Applications of a Synthetic Material to Simulate Soft Sedimentary Rocks
.”
Géotechnique
40
, no. 
2
(June):
189
200
.
16.
Jeong
,
S.
,
S.
 
Ahn
, and
H.
 
Seol
.
2010
. “
Shear Load Transfer Characteristics of Drilled Shafts Socketed in Rocks
.”
Rock Mechanics and Rock Engineering
43
, no. 
1
(February):
41
54
.
17.
Jin
,
J.
,
Y.
 
Liu
,
F. X.
 
Liu
, and
Y. F.
 
Wang
.
2022
. “
Effects of Combined Loadings on the Bearing Performance of a Typical Pile Foundation
.”
Mechanics of Solids
57
, no. 
2
(April):
352
369
.
18.
Johnston
,
I. W.
and
S. K.
 
Choi
.
1986
. “
A Synthetic Soft Rock for Laboratory Model Studies
.”
Géotechnique
36
, no. 
2
(June):
251
263
.
19.
Karthigeyan
,
S.
and
K.
 
Rajagopal
.
2012
. “
Influence of Rock Socketing on the Lateral Response of Single Pile
.”
Indian Geotechnical Journal
42
, no. 
1
:
49
55
.
20.
Kodikara
,
J.
,
K. H.
 
Kong
, and
A.
 
Haque
.
2006
. “
Numerical Evaluation of Side Resistance of Tapered Piles in Mudstone
.”
Géotechnique
56
, no. 
7
(September):
505
510
.
21.
Kong
,
K. H.
,
J.
 
Kodikara
, and
A.
 
Haque
.
2006
. “
Numerical Modelling of the Side Resistance Development of Piles in Mudstone with Direct Use of Sidewall Roughness
.”
International Journal of Rock Mechanics and Mining Sciences
43
, no. 
6
(September):
987
995
.
22.
Krishnan
,
R.
,
G.
 
Gazetas
, and
A.
 
Velez
.
1983
. “
Static and Dynamic Lateral Deflexion of Piles in Non-homogeneous Soil Stratum
.”
Géotechnique
33
, no. 
3
(September):
307
325
.
23.
Lee
,
J.
,
M.
 
Kim
, and
D.
 
Kyung
.
2010
. “
Estimation of Lateral Load Capacity of Rigid Short Piles in Sands Using CPT Results
.”
Journal of Geotechnical and Geoenvironmental Engineering
136
, no. 
1
(January):
48
56
.
24.
Lee
,
J.-S.
and
Y.-H.
 
Park
.
2008
. “
Equivalent Pile Load–Head Settlement Curve Using a Bi-directional Pile Load Test
.”
Computers and Geotechnics
35
, no. 
2
(March):
124
133
.
25.
Madhusudan Reddy
,
K.
and
R.
 
Ayothiraman
.
2015
. “
Experimental Studies on Behavior of Single Pile under Combined Uplift and Lateral Loading
.”
Journal of Geotechnical and Geoenvironmental Engineering
141
, no. 
7
(July):
04015030
.
26.
Mei
,
C.
,
Q.
 
Fang
,
H.
 
Luo
,
J.
 
Yin
, and
X.
 
Fu
.
2017
. “
A Synthetic Material to Simulate Soft Rocks and Its Applications for Model Studies of Socketed Piles
.”
Advances in Materials Science and Engineering
2017
:
1565438
.
27.
Murali
,
A. K.
,
K. M.
 
Tran
,
A.
 
Haque
, and
H. H.
 
Bui
.
2022
. “
Experimental and Numerical Investigation of the Load-Bearing Mechanisms of Piles Socketed in Soft Rocks
.”
Rock Mechanics and Rock Engineering
55
, no. 
9
(September):
5555
5576
.
28.
Patra
,
N. R.
and
P. J.
 
Pise
.
2001
. “
Ultimate Lateral Resistance of Pile Groups in Sand
.”
Journal of Geotechnical and Geoenvironmental Engineering
127
, no. 
6
(June):
481
487
.
29.
Randolph
,
M. F.
A Theoretical Study of the Performance of Piles
.” PhD diss.,
University of Cambridge
,
1977
.
30.
Randolph
,
M. F.
and
G. T.
 
Houlsby
.
1984
. “
The Limiting Pressure on a Circular Pile Loaded Laterally in Cohesive Soil
.”
Géotechnique
34
, no. 
4
(December):
613
623
.
31.
Rao
,
S. N.
and
Y. V. S. N.
 
Prasad
.
1993
. “
Uplift Behavior of Pile Anchors Subjected to Lateral Cyclic Loading
.”
Journal of Geotechnical Engineering
119
, no. 
4
(April):
786
790
.
32.
Robinson
,
B.
,
V.
 
Suarez
,
M. A.
 
Gabr
, and
M.
 
Kowalsky
.
2011
. “
Simplified Lateral Analysis of Deep Foundation Supported Bridge Bents: Driven Pile Case Studies
.”
Journal of Bridge Engineering
16
, no. 
4
(July):
558
569
.
33.
Salimian
,
M. H.
,
A.
 
Baghbanan
,
H.
 
Hashemolhosseini
,
M.
 
Dehghanipoodeh
, and
S.
 
Norouzi
.
2017
. “
Effect of Grouting on Shear Behavior of Rock Joint
.”
International Journal of Rock Mechanics and Mining Sciences
98
(October):
159
166
.
34.
Serrano
,
A.
and
C.
 
Olalla
.
2004
. “
Shaft Resistance of a Pile Embedded in Rock
.”
International Journal of Rock Mechanics and Mining Sciences
41
, no. 
1
(January):
21
35
.
35.
Shanker
,
K.
,
P. K.
 
Basudhar
, and
N. R.
 
Patra
.
2007
. “
Uplift Capacity of Single Piles: Predictions and Performance
.”
Geotechnical and Geological Engineering
25
, no. 
2
(April):
151
161
.
36.
Singh
,
A. P.
,
T.
 
Bhandari
,
R.
 
Ayothiraman
, and
K. S.
 
Rao
.
2017
. “
Numerical Analysis of Rock-Socketed Piles under Combined Vertical-Lateral Loading
.”
Procedia Engineering
191
:
776
784
.
37.
Velez
,
A.
,
G.
 
Gazetas
, and
R.
 
Krishnan
.
1983
. “
Lateral Dynamic Response of Constrained-Head Piles
.”
Journal of Geotechnical Engineering
109
, no. 
8
(August):
1063
1081
.
38.
Wood
,
D. M.
2004
.
Geotechnical Modeling
.
London
:
Spon Press
.
39.
Xing
,
H. F.
,
J.
 
Wu
, and
Y.
 
Luo
.
2017
. “
Field Tests of Large-Diameter Rock-Socketed Bored Piles Based on the Self-Balanced Method and Their Resulting Load Bearing Characteristics
.”
European Journal of Environmental and Civil Engineering
23
, no. 
12
:
1535
1549
.
40.
Xing
,
H. F.
,
F.
 
Xiong
,
L. J.
 
Wang
, and
Y.
 
Luo
.
2017
. “
Research on Shaft Resistance of Rock-Socketed Piles Based on the Cavity Expansion Theory
.”
Marine Georesources & Geotechnology
35
, no. 
6
:
873
877
.
41.
Xing
,
H. F.
,
Z.
 
Zhang
,
M. H.
 
Meng
,
Y.
 
Luo
, and
G. B.
 
Ye
.
2014
. “
Centrifuge Tests of Superlarge-Diameter Rock-Socketed Piles and Their Bearing Characteristics
.”
Journal of Bridge Engineering
19
, no. 
6
(June):
213
226
.
42.
Xiong
,
L.
and
H.
 
Chen
.
2020
. “
A Numerical Study and Simulation of Vertical Bearing Performance of Step-Tapered Pile under Vertical and Horizontal Loads
.”
Indian Geotechnical Journal
50
, no. 
3
(June):
383
409
.
43.
Xu
,
L.-Y.
,
F.
 
Cai
,
G.-X.
 
Wang
,
G.-X.
 
Chen
, and
Y.-L.
 
Li
.
2017
. “
Nonlinear Analysis of Single Reinforced Concrete Piles Subjected to Lateral Loading
.”
KSCE Journal of Civil Engineering
21
, no. 
7
(November):
2622
2633
.
44.
Yang
,
K.
and
R.
 
Liang
.
2006
. “
A 3D FEM Model for Laterally Loaded Drilled Shafts in Rock
.” In
GeoCongress 2006: Geotechnical Engineering in the Information Technology Age
, edited by
D. J.
 
DeGroot
,
J. T.
 
DeJong
,
D.
 
Frost
, and
L. G.
 
Baise
,
1
6
.
Reston, VA
:
American Society of Civil Engineers
.
45.
Yu
,
J.
,
Y.-Y.
 
Cai
, and
W.-B.
 
Wu
.
2013
. “
Effect of Sediment on Vertical Dynamic Impedance of Rock-Socketed Pile with Large Diameter
.”
Journal of Central South University
20
, no. 
10
(October):
2856
2862
.
46.
Zhang
,
L.
,
H.
 
Ernst
, and
H. H.
 
Einstein
.
2000
. “
Nonlinear Analysis of Laterally Loaded Rock-Socketed Shafts
.”
Journal of Geotechnical and Geoenvironmental Engineering
126
, no. 
11
(November):
955
968
.
47.
Zhang
,
L. M.
and
E. Y.
 
Wong
.
2007
. “
Centrifuge Modeling of Large-Diameter Bored Pile Groups with Defects
.”
Journal of Geotechnical and Geoenvironmental Engineering
133
, no. 
9
(September):
1091
1101
.
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