<p>A theoretical model for coupled water-heat processes in frozen soil, considering phase change effects, is developed based on energy and mass conservation principles and the soil freezing curve. Through mathematical derivation, a novel decoupled control equations are obtained to facilitate numerical implementation. The differential equation module of the COMSOL platform is redeveloped, and the decoupled water-heat coupling theory of frozen soil is embedded to realize numerical modeling. Based on in-situ monitoring data from cold region subgrade, the reliability and accuracy of numerical calculations were validated. Subsequently, the subgrade in a specific region of Northwestern China was chosen as the research subject, and an analysis was conducted on its water-heat migration response characteristics under surface conditions. The research results are expected to provide some technical support for engineering practice.</p>

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A novel decoupled model for water and heat coupling in frozen soil and numerical analysis

  • Peipei Chen,
  • Zhi Shang,
  • Ruisong Zhu,
  • Qingfeng Yin,
  • Lei Dong,
  • Shan Feng

摘要

A theoretical model for coupled water-heat processes in frozen soil, considering phase change effects, is developed based on energy and mass conservation principles and the soil freezing curve. Through mathematical derivation, a novel decoupled control equations are obtained to facilitate numerical implementation. The differential equation module of the COMSOL platform is redeveloped, and the decoupled water-heat coupling theory of frozen soil is embedded to realize numerical modeling. Based on in-situ monitoring data from cold region subgrade, the reliability and accuracy of numerical calculations were validated. Subsequently, the subgrade in a specific region of Northwestern China was chosen as the research subject, and an analysis was conducted on its water-heat migration response characteristics under surface conditions. The research results are expected to provide some technical support for engineering practice.