Small-strain foundation response has mostly been studied analytically, with limited experimental verification against 1g physical model tests. This paper revisits the problem of small-strain foundation response, conducting a series of centrifuge model tests, aiming to eliminate the limitations of 1g testing. A centrifuge modelling technique is developed, combining static pushover and dynamic impulse testing for similar systems. To allow for derivation of meaningful insights, a novel procedure for in-flight measurement of the distribution of shear modulus with depth is also developed. The latter combines spectral analysis of surface waves (SASW) measurement of the shear modulus G0 at the surface, and estimation of the distribution of the shear modulus G with depth using acceleration measurements in shaking tests. A novel centrifuge tube–actuator is developed and employed to discharge spherical projectiles against single-degree-of-freedom models lying on shallow foundations on sand. This allows generating dynamic impulse excitation, which is used to measure the small-strain dynamic rocking stiffness. The developed actuator is versatile, and was also used for in-flight SASW testing. The centrifuge model tests are shown to confirm the widely used and well-known formulas. This good agreement can also be seen as a confirmation of the validity of the developed experimental techniques.
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November 2018
Research Article|
November 27 2017
Static and dynamic rocking stiffness of shallow footings on sand: centrifuge modelling Available to Purchase
Damoun Taeseri, MSc;
Damoun Taeseri, MSc
PhD student, Institute for Geotechnical Engineering, ETH Zurich, Switzerland (corresponding author: taeserid@ethz.ch)
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Jan Laue, PhD;
Jan Laue, PhD
Professor, Luleå University of Technology, Sweden
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Panagiotis Martakis, MSc;
Panagiotis Martakis, MSc
MSc graduate, ETH Zurich, Switzerland
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Eleni Chatzi, PhD;
Eleni Chatzi, PhD
Associate Professor, Institute of Structural Engineering, ETH Zurich, Switzerland
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Ioannis Anastasopoulos, PhD
Ioannis Anastasopoulos, PhD
Professor, Institute for Geotechnical Engineering, ETH Zurich, Switzerland
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Publisher: Emerald Publishing
Received:
April 26 2017
Accepted:
October 09 2017
Online ISSN: 2042-6550
Print ISSN: 1346-213X
ICE Publishing: All rights reserved
2017
International Journal of Physical Modelling in Geotechnics (2018) 18 (6): 315–339.
Article history
Received:
April 26 2017
Accepted:
October 09 2017
Citation
Taeseri D, Laue J, Martakis P, Chatzi E, Anastasopoulos I (2018), "Static and dynamic rocking stiffness of shallow footings on sand: centrifuge modelling". International Journal of Physical Modelling in Geotechnics, Vol. 18 No. 6 pp. 315–339, doi: https://doi.org/10.1680/jphmg.17.00024
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