
Regression-Based Prediction of Soil Plasticity and Consistency Indices in the Geological Context of the Sibiu Area, Romania
Abstract
Atterberg-limit testing is fundamental to geotechnical characterization, although the number of determinations may be limited in routine infrastructure investigations by the available testing programme. This study applies and validates previously established regional regression relationships for predicting the plasticity index (Ip) and consistency index (Ic) of fine-grained soils from the Sibiu area, Romania. A database of 83 samples with complete grain-size fractions, natural water content (w), liquid and plastic limits (wL, wP), depth (z), and Atterberg indices was analysed. The plasticity index was predicted from the liquid limit through the linear model Ip = 1.06627 wL − 17.4372, according to [1], whereas the consistency index was predicted using a logarithmically transformed multivariable regression incorporating depth, clay fraction, and natural water content. The Ip model achieved R² = 0.912 and RMSE = 3.64%. The transformed Ic regression achieved R² = 0.942. Lower and upper characteristic values for Ip and Ic were derived from the regression predictions using the statistical procedure described in the manuscript. The proposed relationships support preliminary site characterization, interpolation between tested horizons, and quality control of laboratory determinations; they complement rather than replace laboratory testing. Their applicability is limited to geological conditions comparable with the investigated fine-grained Neogene deposits of the Sibiu area.
© 2026 Gabriela Mariana Dragomir, Mihaela Roca, Irina Rozica Mircea, Bahadır Boztepe, Erbil Balikaya, published by University of Petrosani
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