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◆ Frontiers in Chemical Engineering2026-01-27· Rheology

A physically based rheological model for predicting the flow behavior of non-newtonian crude oil mixtures under cold climate conditions

Alexander Nikolaev, Andrey Goluntsov, Kristina Plotnikova

原始摘要(英文原文)· Original abstract
Accurate prediction of the rheological behavior of heavy crude oil mixtures is essential for pipeline transport under cold climate conditions. This study presents a physically based non-Newtonian rheological model that incorporates the coupled effects of temperature and mixture composition through temperature- and concentration-dependent expressions for the consistency coefficient and flow behavior index. The model was calibrated and validated using 88 experimental rheological measurements on binary mixtures of heavy Severo-Komsomolskoye and light Vankor crudes over a temperature range of 5C–60 °C, heavy-oil concentrations of 0%–100%, and shear rates of 1–300 s -1 . The proposed model predicts shear stress with a mean relative deviation of 8.7% and a root mean square error below 0.95 Pa, outperforming conventional Arrhenius, Refutas, and classical power-law correlations by a factor of 2–3. The model accurately captures the transition from non-Newtonian to near-Newtonian behavior with increasing temperature and dilution, providing a practical tool for hydraulic calculations and flow assurance design in cold-region pipeline systems.
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A physically based rheological model for predicting the flow behavior of non-newtonian crude oil mixtures under cold climate conditions — 科研速览 Science Skim