Discussion to the article Undrained shear strength prediction of clays using liquidity index, by Q. Wang, S. Qiu, H. Zheng, R. Zhang
Citation:
O'Kelly, B.C. and Haigh, S.K., Discussion to the article Undrained shear strength prediction of clays using liquidity index, by Q. Wang, S. Qiu, H. Zheng, R. Zhang, Acta Geotechnica, 20, 3, 2025, 1495 - 1498Abstract:
This communication presents a critical discussion of the article ‘‘Undrained shear strength prediction of clays using
liquidity index’’, authored by Q. Wang, S. Qiu, H. Zheng, R. Zhang, and recently published in Acta Geotechnica (https://
doi.org/10.1007/s11440-023-02107-9). Various inaccurate claims and flaws regarding the Authors’ newly developed three-
parameter strength–liquidity index (S u–IL) models/correlations are highlighted and discussed herein. In particular, comparing existing two-parameter and their newly developed three-parameter S u–I L models, contrary to the Authors’ claims, no
improvement in prediction accuracy is achieved over the two-parameter model by introducing a third model parameter.
Rather, it is shown herein that the existing two-parameter and the Authors’ three-parameter S u–I L models are mathe-
matically identical. Furthermore, two of the Authors’ newly developed S u–I L correlations, i.e., relating the triaxial-
compression and shearbox derived strengths to the liquidity index, are shown to be inaccurate, forecasting gross under- and
over-predictions of the measured strengths, respectively. This highlights the need for a reassessment of the proposed
correlations, and emphasizes the importance of accurate and reliable correlations in geotechnical engineering.
Author's Homepage:
http://people.tcd.ie/bokellyDescription:
PUBLISHED
Author: O'Kelly, Brendan
Type of material:
Journal ArticleSeries/Report no:
Acta Geotechnica;20;
3;
Availability:
Full text availableSubject (TCD):
Smart & Sustainable Planet , GEOTECHNICAL ENGINEERING , Geotechnics , Soil Mechanics , Soil Mechanics & Foundations , correlations , geotechnical , liquidity index , shear strengthDOI:
https://doi.org/10.1007/s11440-024-02385-xMetadata
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