Internal erosion from internally unstable soils can negatively affect long-term strength of embankment dams. Investigations of the packing behaviour of a gap-graded internally unstable soil identified two distinct microstructures: (a) a microstructure in which the non-erodible coarser fraction remains at its densest packing when the proportion of erodible particles is below a transition finer fraction and (b) a microstructure in which the coarser fraction becomes looser as the finer fraction increases above this transition. Laboratory tests, using water-soluble salt as the erodible particles, showed that for the first microstructure mechanical behaviour was unaffected by particle loss (i.e. suffusion). It was only for the second microstructure that particle loss affected mechanical behaviour (i.e. suffosion). When the proportion of erodible particles exceeded a higher critical finer fraction, coarser particles became dispersed, no longer forming a skeleton from which particles could erode, resulting in internal stability.
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August 2019
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Research Article|
October 08 2018
Strength changes during internal erosion of gap-graded soils
Charles John MacRobert, PhD
;
Charles John MacRobert, PhD
School of Civil and Environmental Engineering, University of the Witwatersrand, Johannesburg, South Africa (corresponding author: charles.macrobert@wits.ac.za)
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Peter William Day, DEng;
Peter William Day, DEng
Department of Civil Engineering, University of Stellenbosch, Stellenbosch, South Africa
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Irvin Luker, PhD
Irvin Luker, PhD
School of Civil and Environmental Engineering, University of the Witwatersrand, Johannesburg, South Africa
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Publisher: Emerald Publishing
Received:
April 09 2018
Accepted:
September 11 2018
Online ISSN: 1751-8563
Print ISSN: 1353-2618
ICE Publishing: All rights reserved
2018
Proceedings of the Institution of Civil Engineers - Geotechnical Engineering (2019) 172 (4): 331–343.
Article history
Received:
April 09 2018
Accepted:
September 11 2018
Citation
MacRobert CJ, Day PW, Luker I (2019), "Strength changes during internal erosion of gap-graded soils". Proceedings of the Institution of Civil Engineers - Geotechnical Engineering, Vol. 172 No. 4 pp. 331–343, doi: https://doi.org/10.1680/jgeen.18.00064
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