Shape uncertainty analysis of laminar forced convection in a round microchannel with viscous dissipation

Fuente: arXiv
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Auteurs principaux: Barletta, A., Celli, M., Sphaier, L. A., Brandao, P. V., Lazzari, S., Ghedini, E.
Format: Preprint
Publié: 2024
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author Barletta, A.
Celli, M.
Sphaier, L. A.
Brandao, P. V.
Lazzari, S.
Ghedini, E.
author_facet Barletta, A.
Celli, M.
Sphaier, L. A.
Brandao, P. V.
Lazzari, S.
Ghedini, E.
contents The shape of a microchannel is usually affected by a significant uncertainty due to the small size of the cross-section, comparable with the typical wall-roughness length scale. Such an uncertainty is present at any scale, but it is definitely amplified and, hence, significantly important when the hydraulic diameter becomes smaller than some tenth micrometers. The focus of this paper is on the numerical analysis of the sensitivity to shape random modification, within a prefixed maximum extent, of the main flow and heat transfer characteristics of fully-developed forced convection. The numerical solutions are carried out by employing a finite-element solver repeated over a statistical sample of randomly generated perimetral profiles that simulate the wall roughness. The study includes the evaluation of the Fanning friction factor and of the Nusselt number for the T, H1 and H2 thermal boundary conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2406_11348
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Shape uncertainty analysis of laminar forced convection in a round microchannel with viscous dissipation
Barletta, A.
Celli, M.
Sphaier, L. A.
Brandao, P. V.
Lazzari, S.
Ghedini, E.
Fluid Dynamics
The shape of a microchannel is usually affected by a significant uncertainty due to the small size of the cross-section, comparable with the typical wall-roughness length scale. Such an uncertainty is present at any scale, but it is definitely amplified and, hence, significantly important when the hydraulic diameter becomes smaller than some tenth micrometers. The focus of this paper is on the numerical analysis of the sensitivity to shape random modification, within a prefixed maximum extent, of the main flow and heat transfer characteristics of fully-developed forced convection. The numerical solutions are carried out by employing a finite-element solver repeated over a statistical sample of randomly generated perimetral profiles that simulate the wall roughness. The study includes the evaluation of the Fanning friction factor and of the Nusselt number for the T, H1 and H2 thermal boundary conditions.
title Shape uncertainty analysis of laminar forced convection in a round microchannel with viscous dissipation
topic Fluid Dynamics
url https://arxiv.org/abs/2406.11348