Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct

The paper presents simulations of laminar forced convection in non-circular piping of flat solar collectors made of ceramics or concrete, which are characterized by a low thermal conduction coefficient. The cross-sections of piping in the shape of a regular polygonal, elliptic, superellipse (Lamé cu...

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Main Author: Teleszewski Tomasz Janusz
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/42/e3sconf_asee18_00091.pdf
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spelling doaj-eb16ed3c43c04168b4e3075aa3375c572021-03-02T10:16:57ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011160009110.1051/e3sconf/201911600091e3sconf_asee18_00091Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular ductTeleszewski Tomasz Janusz0Department of HVAC Engineering, Bialystok University of TechnologyThe paper presents simulations of laminar forced convection in non-circular piping of flat solar collectors made of ceramics or concrete, which are characterized by a low thermal conduction coefficient. The cross-sections of piping in the shape of a regular polygonal, elliptic, superellipse (Lamé curve) and Cassini oval were used for the calculations. In order to perform the simulation, a simplified two-dimensional model of laminar forced convection in a straight axis duct was used and the issue of H2 (constant axial wall heat flux with uniform peripheral wall heat flux) for materials with low thermal conductivity was applied. The calculations were made using the boundary element method (BEM) in a calculation program written by Fortran by the author. In the work, the number of Poiseuille, Nusselt and dimensionless parameters for the evaluation of heat exchangers such as the area goodness factor and the volume goodness factor were determined in the function of characteristic geometrical parameters of the assumed cross-sectional shapes of the flat solar collector piping.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/42/e3sconf_asee18_00091.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Teleszewski Tomasz Janusz
spellingShingle Teleszewski Tomasz Janusz
Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
E3S Web of Conferences
author_facet Teleszewski Tomasz Janusz
author_sort Teleszewski Tomasz Janusz
title Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
title_short Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
title_full Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
title_fullStr Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
title_full_unstemmed Numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
title_sort numerical laminar forced convection modelling in a ceramic and concrete solar collector with non-circular duct
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description The paper presents simulations of laminar forced convection in non-circular piping of flat solar collectors made of ceramics or concrete, which are characterized by a low thermal conduction coefficient. The cross-sections of piping in the shape of a regular polygonal, elliptic, superellipse (Lamé curve) and Cassini oval were used for the calculations. In order to perform the simulation, a simplified two-dimensional model of laminar forced convection in a straight axis duct was used and the issue of H2 (constant axial wall heat flux with uniform peripheral wall heat flux) for materials with low thermal conductivity was applied. The calculations were made using the boundary element method (BEM) in a calculation program written by Fortran by the author. In the work, the number of Poiseuille, Nusselt and dimensionless parameters for the evaluation of heat exchangers such as the area goodness factor and the volume goodness factor were determined in the function of characteristic geometrical parameters of the assumed cross-sectional shapes of the flat solar collector piping.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/42/e3sconf_asee18_00091.pdf
work_keys_str_mv AT teleszewskitomaszjanusz numericallaminarforcedconvectionmodellinginaceramicandconcretesolarcollectorwithnoncircularduct
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