This article develops a modal expansion (in terms of functions exponentially decaying with time) of the force acting on a micrometric particle and stemming from fluid inertial effects (usually referred to as the Basset force) deriving from the application of the time-dependent Stokes equation to model fluid–particle interactions. One of the main results is that viscoelastic effects induce the regularization of the inertial memory kernels at t=0, eliminating the 1/√t-singularity characterizing Newtonian fluids. The physical origin of this regularization stems from the finite propagation velocity of the internal shear stresses characterizing viscoelastic constitutive equations. The analytical expression for the fluid inertial kernel is derived for a Maxwell fluid, and a general method is proposed to obtain accurate approximations of it for generic complex viscoelastic fluids, characterized by a spectrum of relaxation times.

Modal representation of inertial effects in fluid–particle interactions and the regularity of the memory kernels / Procopio, Giuseppe; Giona, Massimiliano. - In: FLUIDS. - ISSN 2311-5521. - 8:3(2023). [10.3390/fluids8030084]

Modal representation of inertial effects in fluid–particle interactions and the regularity of the memory kernels

Giuseppe Procopio;Massimiliano Giona
2023

Abstract

This article develops a modal expansion (in terms of functions exponentially decaying with time) of the force acting on a micrometric particle and stemming from fluid inertial effects (usually referred to as the Basset force) deriving from the application of the time-dependent Stokes equation to model fluid–particle interactions. One of the main results is that viscoelastic effects induce the regularization of the inertial memory kernels at t=0, eliminating the 1/√t-singularity characterizing Newtonian fluids. The physical origin of this regularization stems from the finite propagation velocity of the internal shear stresses characterizing viscoelastic constitutive equations. The analytical expression for the fluid inertial kernel is derived for a Maxwell fluid, and a general method is proposed to obtain accurate approximations of it for generic complex viscoelastic fluids, characterized by a spectrum of relaxation times.
2023
microparticle dynamics; complex viscoelastic fluids; fluid inertial effects; time-dependent Stokes equations; modal expansion
01 Pubblicazione su rivista::01a Articolo in rivista
Modal representation of inertial effects in fluid–particle interactions and the regularity of the memory kernels / Procopio, Giuseppe; Giona, Massimiliano. - In: FLUIDS. - ISSN 2311-5521. - 8:3(2023). [10.3390/fluids8030084]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1673088
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