Both calcareous silt and calcium carbonate (CaCO3) precipitation crystals generated by microbially induced calcium carbonate precipitation (MICP) are fine-grained but exhibit distinct properties. The combined effect of these two components on the liquefaction resistance of biotreated binary soils is rarely reported. In this study, systematic undrained cyclic triaxial tests and bender element tests were conducted on reconstituted calcareous sand specimens, varying in two density parameters, four levels of fines content and three biotreatment levels. The results reveal that packing density, fines content and biotreatment levels significantly affect the cyclic behaviour, liquefaction resistance and shear wave velocity of biotreated soils. In addition, low-boundary curves were established to improve the accuracy of liquefaction assessments at sites with high shear wave velocity. Furthermore, the relative contributions of fines and calcium carbonate crystals were incorporated using the concept of the unified equivalent intergranular void ratio (EIVR). The utility of this approach in characterising the liquefaction resistance of biotreated binary soils was validated through the data from both this study and previous research. The new unified EIVR concept can be used to estimate the complex liquefaction resistance of cemented binary soils, which further enhances the theoretical framework for dynamic liquefaction of non-cemented or cemented sandy soils.
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1 November 2025
Research Article|
April 16 2025
Unified equivalent intergranular void ratio for biotreated binary soils in characterising liquefaction resistance Available to Purchase
Jian Hu;
Jian Hu
* School of Civil Engineering,
Chongqing University
, Chongqing, P. R. China
.
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Yang Xiao
;
Yang Xiao
† School of Civil Engineering,
Chongqing University
, Chongqing, P. R. China
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Xiang He;
Xiang He
‡ School of Civil and Environmental Engineering,
Nanyang Technological University
, Singapore
.
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Jinquan Shi;
Jinquan Shi
* School of Civil Engineering,
Chongqing University
, Chongqing, P. R. China
.
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Hanlong Liu;
Hanlong Liu
* School of Civil Engineering,
Chongqing University
, Chongqing, P. R. China
.
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Jian Chu
Jian Chu
‡ School of Civil and Environmental Engineering,
Nanyang Technological University
, Singapore
.
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Publisher: Emerald Publishing
Received:
September 16 2024
Accepted:
February 20 2025
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Geotechnique (2025) 75 (11): 1485–1501.
Article history
Received:
September 16 2024
Accepted:
February 20 2025
Citation
Hu J, Xiao Y, He X, Shi J, Liu H, Chu J (2025), "Unified equivalent intergranular void ratio for biotreated binary soils in characterising liquefaction resistance". Geotechnique, Vol. 75 No. 11 pp. 1485–1501, doi: https://doi.org/10.1680/jgeot.24.01280
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