Data-driven ANN model for estimating unfrozen water content in the thermo-hydraulic simulation of frozen soils
Mingpeng Liu, Peizhi Zhuang, Raul Fuentes

TL;DR
This paper presents a novel data-driven artificial neural network model integrated into thermo-hydraulic simulations to accurately estimate unfrozen water content in frozen soils, improving prediction of key soil behaviors.
Contribution
The study introduces a new method combining ANN with thermo-hydraulic modeling for frozen soils, enhancing accuracy over existing empirical equations.
Findings
ANN model outperforms empirical equations in estimating unfrozen water content
The integrated algorithm accurately predicts temperature, water, and ice content in frozen soils
Simulation results agree well with experimental data
Abstract
This study integrates a data-driven model for estimating the unfrozen water content into the thermo-hydraulic coupling simulation of frozen soils. An artificial neural network (ANN) was employed to develop this data-driven model using a dataset from the literature. Thereafter, a numerical algorithm was developed to implement the data-driven model into the thermo-hydraulic simulation. In the numerical algorithm, the frozen and unfrozen zones are distinguished first according to the freezing temperature, where the unfrozen water at frozen nodes is updated using the ANN model. Subsequently, discretized hydraulic and thermal equations are solved sequentially and iteratively using Newton-Raphson method until the temperature and unfrozen water content satisfy the tolerance simultaneously. Horizontal and vertical freezing experiments are used to verify the reliability of the proposed…
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Taxonomy
TopicsClimate change and permafrost · Arctic and Antarctic ice dynamics · Icing and De-icing Technologies
