DOI: 10.3390/buildings16193829 ISSN: 2075-5309

Correction of Compression Modulus of Deep Cohesive Soil and Settlement Calculation Based on Field Tests in the Haihe Alluvial Plain

Chunhui Su, Haize Pan, Qingmin Hou, Lili Zhang, Jiping Cao, Li Wang, Xiaobo Yuan

The compression modulus is a key parameter governing the settlement of bridge foundations. To accurately predict pile-group settlement, this study draws on a high-speed railway bridge project crossing the Haihe Alluvial Plain. Combining field monitoring with theoretical analysis, the compression modulus of clay-bearing strata deeper than 50 m is investigated and state-specific correction factors together with their relation to the liquidity index are proposed. The in-situ compression modulus back-calculated from measured settlement of deep clay is 10.47–22.97 times the laboratory modulus E0. The correction factor β is closely related to soil consistency: mean β values of 0.585, 0.633, 0.648 and 0.798 are obtained for stiff, firm-to-stiff, plastic and soft clays, respectively. β increases linearly with the liquidity index, showing a strong positive correlation. The sensitivity analysis shows that a deviation of 0.05 in β leads to an error of approximately −17% to +24% in the calculated total settlement, and underestimating β yields unsafe predictions. When the measurement resolution is combined, the overall uncertainty band of β is approximately ±0.06, corresponding to an uncertainty band of approximately −21% to +28% in the calculated total settlement. Recommended values are 0.53–0.65 (stiff), 0.57–0.69 (firm-to-stiff), 0.59–0.71 (plastic) and 0.74–0.86 (soft). Within the 0.5 m disturbed zone below the pile tip, the modulus may be taken as 1.2 E0 for soft clay, 1.6 E0 for medium-dense sand and 2.0 E0 for firm-to-stiff clay. The results provide a parameter basis for the settlement prediction of deep-long pile groups in the Haihe Alluvial Plain.