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Publishing Language: Chinese | Open Access

Identification of consolidation model parameters using spatiotemporally varying pore water pressure measurements

Run-tao ZHAN1,2Xiao-meng YIN1,3
College of Architecture and Civil Engineering, Xinyang Normal University, Xinyang, Henan 464000, China
Henan Unsaturated Soil and Special Soil Engineering Technology Research Center, Xinyang Normal University, Xinyang, Henan 464000, China
School of Civil Engineering and Architecture, Hubei University of Arts and Science, Wuhan, Hubei 441053, China
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Abstract

The study applies the least squares technique in conjunction with a series of spatiotemporally varying pore water pressure measurements to identify the geotechnical parameters of consolidation models. Firstly, a least squares function for pore water pressure, incorporating both temporal and spatial coordinates, is developed. Subsequently, a new Jacobian matrix is constructed to accommodate any number of temporal and spatial measurements. Using Taylor series expansion, the iterative equations for the Gauss-Newton, Levenberg, Marquardt, and Nielsen methods are derived. The proposed methods are validated using two numerical examples. In Case 1, the consolidation coefficient of Terzaghi’s model is identified. Comparative analysis reveals that all four methods converge to the correct solution, although the Marquardt method converges more slowly. In Case 2, the coordinates of a point source in a two-dimensional fluid-saturated medium are identified using a poroelastic consolidation model. The Gauss-Newton method fails to accurately locate the point source, whereas the Nielsen method accelerates convergence but introduces multiple damping coefficient intervals and convergence values. The Marquardt method is more effective for point source identification. Additionally, the study highlights the importance of sensor placement and initial iteration coordinates for accurate point source identification. Both cases show that the proposed methods possess some noise resistance.

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Rock and Soil Mechanics
Pages 3315-3328

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Cite this article:
ZHAN R-t, YIN X-m. Identification of consolidation model parameters using spatiotemporally varying pore water pressure measurements. Rock and Soil Mechanics, 2025, 46(10): 3315-3328. https://doi.org/10.26599/RSM.2024.94300571

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Received: 10 October 2024
Accepted: 09 June 2025
Published: 03 June 2026
© 2025 Rock and Soil Mechanics