Shear modulus measurement using bender elements in laboratory samples has become very popular. However, the test results are hard to interpret. Simple plane wave test models are too coarse and result in substantial measurement uncertainty: near 100% in G0. A possible refinement of the test model is based on Stokes's fundamental solution for an isolated source. Near-field effects appear, and they have been regularly quoted as a major source of uncertainty in tests. There are some criteria in use for avoidance of near-field distortions, but they are signal dependent and not always successful. After some consideration of Stokes's fundamental solution the authors propose a new frequency domain signal-independent criterion to avoid near-field effects. Time-domain criteria are also given, but they are shown to be signal dependent. Applying this criterion to some experimental results the authors then also show how near-field induced errors are not responsible for much of the observed signal distortion. Uncertainty in signal arrival lasts well beyond the end of the Stokes source near field.
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April 2003
Research Article|
April 01 2003
Source near-field effects and pulse tests in soil samples Available to Purchase
M. Arroyo;
M. Arroyo
Engineer
*
Iberinsa
Madrid
; formerly University of Bristol
UK
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D. Muir Wood;
D. Muir Wood
†
Department of Civil Engineering, University of Bristol
UK
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P. D. Greening
P. D. Greening
‡
Department of Civil and Environmental Engineering, University College
London
formerly University of Bristol
UK
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Publisher: Emerald Publishing
Received:
May 21 2002
Accepted:
September 09 2002
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2003 Thomas Telford Ltd
2003
Geotechnique (2003) 53 (3): 337–345.
Article history
Received:
May 21 2002
Accepted:
September 09 2002
Citation
Arroyo M, Muir Wood D, Greening PD (2003), "Source near-field effects and pulse tests in soil samples". Geotechnique, Vol. 53 No. 3 pp. 337–345, doi: https://doi.org/10.1680/geot.2003.53.3.337
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