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01-12-2024 | Original Paper

Comparing Phenomenological Models of Shear Thinning of Alkanes at Low and High Newtonian Viscosities

Authors: Wenhui Li, Vikram Jadhao

Published in: Tribology Letters | Issue 4/2024

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Abstract

The article discusses the phenomenon of shear thinning in alkanes, where fluids exhibit decreased viscosity under shear strain. It compares two main classes of models: power-law models like Carreau and Carreau–Yasuda, which assume molecular order changes, and the Eyring model, which attributes shear thinning to thermal activation. Using non-equilibrium molecular dynamics (NEMD) simulations and experimental data, the authors evaluate these models' effectiveness in describing shear thinning behavior. They introduce intermediate scaling plots and a justification criterion to fairly compare models with different numbers of fitting parameters. The study finds that the Eyring model is more suitable for high-viscosity fluids, while power-law models are better for low-viscosity fluids. The results emphasize that the choice of model depends on the fluid's Newtonian viscosity, providing valuable insights for practical applications like hydraulic fracturing and lubrication.

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Metadata
Title
Comparing Phenomenological Models of Shear Thinning of Alkanes at Low and High Newtonian Viscosities
Authors
Wenhui Li
Vikram Jadhao
Publication date
01-12-2024
Publisher
Springer US
Published in
Tribology Letters / Issue 4/2024
Print ISSN: 1023-8883
Electronic ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-024-01908-7

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