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Methods Dead-EndOpen accessEnvironmental sciences

Model Validation and Sensitivity Analysis of Coupled Non‐Equilibrium Heat and Mass Transfer in Porous Media With Application to Evaporation From Bare Soils

Ashkan Talebi; Brent E. Sleep; Denis M. O'Carroll · 2023 · Water Resources Research

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Abstract

Abstract Mathematical models in engineering play an important role in understanding and predicting the behavior of a system. A mechanistic coupled liquid water, water vapor and heat transfer model incorporating kinetic phase change accounting for real‐time interfacial area between water and gas phases was developed to predict coupled subsurface processes and evaporation (drying) rates from bare soils. To enhance the model capability to predict evaporation rates, the air resistance associated with the viscous sublayer was implemented in energy and mass exchange across the soil‐air interface (th

Abstract by Ashkan Talebi; Brent E. Sleep; Denis M. O'Carroll, Water Resources Research (2023) — licensed CC BY 4.0.

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Metadata source: DOAJ · DOI 10.1029/2023wr035573