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physics.flu-dyn2026
A fast and consistent sharp-interface immersed boundary method for moving bodies of arbitrary thickness
Giovanni Vagnoli, Martino Andrea Scarpolini, Roberto Verzicco +1
Immersed boundary methods (IBMs) are widely used to simulate flows around complex geometries and moving bodies, but they often involve a trade-off between precision and computation…
physics.flu-dyn2025
A Quasi-Analytical Solution for "Carreau-Yasuda-like" Shear-thinning Fluids Flowing in Slightly Tapered Pipes
Gianluca Santesarti, Michele Marino, Francesco Viola +2
This paper presents a quasi-analytical framework for "Carreau-Yasuda-like" fluids with a viscosity characterized by two constant plateau at low and high shear rates connected by a…
physics.flu-dyn2025
An Insight into Parameter Identifiability Issues in the Carreau-Yasuda Model: a More Consistent Rheological Formulation for Shear-thinning non-Newtonian Inelastic Fluids
Gianluca Santesarti, Michele Marino, Francesco Viola +2
The Carreau-Yasuda rheological model is widely employed in both research and industrial applications to describe the shear-thinning behaviour of non-Newtonian inelastic fluids. How…