Semi-analytical solutions of passive scalar transport in generalized Newtonian fluid flow

Fuente: arXiv
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Main Authors: Bowers, Christopher A., Miller, Cass T.
Format: Preprint
Published: 2025
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author Bowers, Christopher A.
Miller, Cass T.
author_facet Bowers, Christopher A.
Miller, Cass T.
contents Transport during flow of generalized Newtonian fluids (GNFs) appears often in systems that can be treated in a simplified form as either cylindrical tubes or slit openings between parallel plates. Based on the pioneering work of Taylor, analytical solutions for transport in these simplified systems were derived generally. This includes analytical solutions for advection dominated transport, as well as a computation of the enhanced molecular diffusion coefficient in low Peclet number systems. The newly derived general solutions for species transport were applied to Cross and Carreau model fluids using a semi-analytical solution for velocity of these fluids. The semi-analytical solutions derived herein were compared to microscale simulations and showed agreement to within the numerical error of those simulations. The semi-analytical transport solutions derived here were developed without assuming any specific fluid rheology, thus these solutions can be applied to other non-Newtonian fluids, such as viscoelastic or viscoplastic fluids, as a straightforward extension of this work.
format Preprint
id arxiv_https___arxiv_org_abs_2505_13320
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Semi-analytical solutions of passive scalar transport in generalized Newtonian fluid flow
Bowers, Christopher A.
Miller, Cass T.
Fluid Dynamics
Transport during flow of generalized Newtonian fluids (GNFs) appears often in systems that can be treated in a simplified form as either cylindrical tubes or slit openings between parallel plates. Based on the pioneering work of Taylor, analytical solutions for transport in these simplified systems were derived generally. This includes analytical solutions for advection dominated transport, as well as a computation of the enhanced molecular diffusion coefficient in low Peclet number systems. The newly derived general solutions for species transport were applied to Cross and Carreau model fluids using a semi-analytical solution for velocity of these fluids. The semi-analytical solutions derived herein were compared to microscale simulations and showed agreement to within the numerical error of those simulations. The semi-analytical transport solutions derived here were developed without assuming any specific fluid rheology, thus these solutions can be applied to other non-Newtonian fluids, such as viscoelastic or viscoplastic fluids, as a straightforward extension of this work.
title Semi-analytical solutions of passive scalar transport in generalized Newtonian fluid flow
topic Fluid Dynamics
url https://arxiv.org/abs/2505.13320