Strain localisation width is an important characteristic for failure assessments in a range of boundary value problems, as it affects the rate of strength reduction in strain-softening soils. Although image-based deformation measurement techniques have been used to measure strain localisation widths in sands, there have been fewer investigations in clays and measurement accuracy remains unquantified. In view of this, this paper investigates the feasibility of using image-based deformation measurement techniques to measure strain localisation widths in clays. A simple method, based on the measured displacement field, is proposed to ascertain boundaries of localised deformation regions. This method is then applied to analyses using synthetic images with prescribed localisations to establish the optimal measurement point size (patch size) and spacing and the minimum measurable localisation width. The paper then applies the technique to measure the localisation width that develops during undrained pipe penetration in normally consolidated clay. A strain localisation is seen to form close to the pipe and then extend away from the pipe due to progressive failure and narrow as penetration increases before becoming inactive. The measured localisation widths are above the minimum measurable width, indicating that accurate measurement of strain localisation using image-based deformation measurement techniques is feasible.
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20 March 2026
Research Article|
October 31 2025
Detection and measurement of strain localisations in clay using particle image velocimetry
Yumeng Qi;
Centre for Offshore Foundation Systems,
University of Western Australia
, Perth, Australia
Corresponding author Yumeng Qi (yumeng.qi@research.uwa.edu.au)
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Conleth D. O’Loughlin;
Conleth D. O’Loughlin
Centre for Offshore Foundation Systems,
University of Western Australia
, Perth, Australia
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Mark Fraser Bransby
Mark Fraser Bransby
Centre for Offshore Foundation Systems,
University of Western Australia
, Perth, Australia
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Corresponding author Yumeng Qi (yumeng.qi@research.uwa.edu.au)
Publisher: Emerald Publishing
Received:
October 29 2024
Accepted:
September 19 2025
Online ISSN: 2042-6550
Print ISSN: 1346-213X
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
International Journal of Physical Modelling in Geotechnics (2026) 26 (2): 65–80.
Article history
Received:
October 29 2024
Accepted:
September 19 2025
Citation
Qi Y, O’Loughlin CD, Bransby MF (2026), "Detection and measurement of strain localisations in clay using particle image velocimetry". International Journal of Physical Modelling in Geotechnics, Vol. 26 No. 2 pp. 65–80, doi: https://doi.org/10.1680/jphmg.24.00063
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