Shear viscosity scaling of granular suspensions across semi-dilute to dense regimes
ID:98 View Protection:ATTENDEE Updated Time:2024-04-10 17:08:34 Hits:561 Oral Presentation

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Abstract
We present evidence of a semi-dilute-dense behaviour transition in suspensions from a thorough study combining both experiments and numerical results. Following an extensive experimental study, where such a transition was observed, we perform constant-volume shearing simulations of non-Brownian granular suspensions using the discrete element method coupled with the lattice Boltzmann method (DEM-LBM). We choose a wide range of solid fractions, shear rates, fluid viscosities, particle sizes, and inter-particle frictional coefficients to obtain a scaling solution for the viscous behaviour of suspensions in both semi-dilute and dense regimes. This result demonstrates that, with a proposed semi-dilute-dense transitional solid fraction, $\phi_d$, there exists a strong correlation between the inverse relative viscosity and the shear stress. This work incorporates both the $\phi$-dependence and the $\dot{\gamma}$-dependence of suspension viscosity in a universal framework, which provides a scaling solution for granular suspensions across semi-dilute and dense regimes and sheds light on the semi-dilute-dense transition mechanisms. This work also gives some evidence of a second-order critical phenomenon related to the semi-dilute-dense transition of granular suspensions.
 
Keywords
granular suspension,shear viscosity,critical scaling,DEM-LBM simulation
Speaker
张早辉
西湖大学

Submission Author
张早辉 西湖大学
满腾 西湖大学
HuppertHerbert 剑桥大学
Sergio AndresGalindo Torres 西湖大学
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Important Date
  • Conference Date

    May 31

    2024

    to

    Jun 03

    2024

  • Jun 03 2024

    Abstract Submission Deadline

  • Jun 03 2024

    Draft paper submission deadline

  • Jun 03 2024

    Registration deadline

Sponsored By
Panel of Computational Mechanics on Granular Materials
Working Party of Computational Mechanics
Chinese Society of Theoretical and Applied Mechanics
Organized By
Hohai University
Dalian University of Technology
Chinese Society of Particuology
Jiangsu Society of Theoretical and Applied Mechanics
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