Analysis of pressure drop in a numerical simulation of internal nanofluids flow

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Main Author: Marcos Barroso Filho
Format: Artículo científico
Language:en
Published: Sociedade Brasileira de Proteção Radiológica - SBPR 2020
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author Marcos Barroso Filho
author_facet Marcos Barroso Filho
contents Analysis of pressure drop in a numerical simulation of internal nanofluids flow Marcos Barroso Filho Biología CFD Nanofluids Pressure Drop This study aims at the calculation of pressure drop from simulation of internal nanofluid flow in a new and long stainless pipe (1.4 m long and 0.01 m diameter). Calculations were made from numeric simulations which were based on theoretical models and experimental proprieties of three nanofluids: graphene nanodiscs with water, titanium oxide nanospheres with water and iron oxide nanospheres with water. Different concentrations were considered in each kind of nanofluid. Calculus of pressure drop were based on Darcy-Weisbach equations model. It was considered a fully developed turbulent flow for two numbers of Reynolds (Re), 4583 and18187. After analysis, it was verified a decrease in pressure drop values for each nanofluid, in parallel with the decrease of particulate quantities. 2020 artículo científico 2319-0612 https://www.redalyc.org/articulo.oa?id=722280924007 en http://www.redalyc.org/revista.oa?id=7222 Brazilian Journal of Radiation Sciences application/pdf Sociedade Brasileira de Proteção Radiológica - SBPR Brazilian Journal of Radiation Sciences (Brasil) Num.3A Vol.8
format Artículo científico
id redalyc_722280924007
institution Redalyc
language en
publishDate 2020
publisher Sociedade Brasileira de Proteção Radiológica - SBPR
spellingShingle Analysis of pressure drop in a numerical simulation of internal nanofluids flow
Marcos Barroso Filho
Biología
CFD
Nanofluids
Pressure Drop
Analysis of pressure drop in a numerical simulation of internal nanofluids flow Marcos Barroso Filho Biología CFD Nanofluids Pressure Drop This study aims at the calculation of pressure drop from simulation of internal nanofluid flow in a new and long stainless pipe (1.4 m long and 0.01 m diameter). Calculations were made from numeric simulations which were based on theoretical models and experimental proprieties of three nanofluids: graphene nanodiscs with water, titanium oxide nanospheres with water and iron oxide nanospheres with water. Different concentrations were considered in each kind of nanofluid. Calculus of pressure drop were based on Darcy-Weisbach equations model. It was considered a fully developed turbulent flow for two numbers of Reynolds (Re), 4583 and18187. After analysis, it was verified a decrease in pressure drop values for each nanofluid, in parallel with the decrease of particulate quantities. 2020 artículo científico 2319-0612 https://www.redalyc.org/articulo.oa?id=722280924007 en http://www.redalyc.org/revista.oa?id=7222 Brazilian Journal of Radiation Sciences application/pdf Sociedade Brasileira de Proteção Radiológica - SBPR Brazilian Journal of Radiation Sciences (Brasil) Num.3A Vol.8
title Analysis of pressure drop in a numerical simulation of internal nanofluids flow
topic Biología
CFD
Nanofluids
Pressure Drop
url https://www.redalyc.org/articulo.oa?id=722280924007