Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation

ABSTRACT: The vaporization characteristics of Palm and Castor oil biodiesel (Ricinus comunis) droplets were studied. An experimental set-up for measuring the evaporation rate of fuel droplets at atmospheric pressure and variable temperatures was developed. The droplets were suspended on a quartz fib...

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Main Authors: M.L Botero, A. Molina
Format: Article
Language:English
Published: Instituto Colombiano del Petróleo (ICP) - ECOPETROL S.A.
Series:CT&F Ciencia, Tecnología & Futuro
Subjects:
Online Access:http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0122-53832017000100083&lng=en&tlng=en
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author M.L Botero
A. Molina
author_facet M.L Botero
A. Molina
author_sort M.L Botero
collection DOAJ
description ABSTRACT: The vaporization characteristics of Palm and Castor oil biodiesel (Ricinus comunis) droplets were studied. An experimental set-up for measuring the evaporation rate of fuel droplets at atmospheric pressure and variable temperatures was developed. The droplets were suspended on a quartz fiber with initial droplet diameters ranging from 0.9 mm to 1.3 mm. The D2 law model for droplet evaporation was used to predict the evaporation rate of the fuels. Biodiesel physical properties were estimated using group contribution methods and empirical mixing rules. Numerical results accurately predict the evaporation rate of biodiesel when compared to experimental results, with maximum deviations of the evaporation of 15.2%. Results show that Castor oil biodiesel evaporation rate is 48% lower than that for Palm oil biodiesel at the studied temperatures. This is explained by its higher density and vaporization enthalpy, which can be traced back to the structure of the fuel components.
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spelling doaj.art-4a0824ff78ea40748cc50072e57a80472022-12-22T04:32:18ZengInstituto Colombiano del Petróleo (ICP) - ECOPETROL S.A.CT&F Ciencia, Tecnología & Futuro0122-5383658394S0122-53832017000100083Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporationM.L BoteroA. MolinaABSTRACT: The vaporization characteristics of Palm and Castor oil biodiesel (Ricinus comunis) droplets were studied. An experimental set-up for measuring the evaporation rate of fuel droplets at atmospheric pressure and variable temperatures was developed. The droplets were suspended on a quartz fiber with initial droplet diameters ranging from 0.9 mm to 1.3 mm. The D2 law model for droplet evaporation was used to predict the evaporation rate of the fuels. Biodiesel physical properties were estimated using group contribution methods and empirical mixing rules. Numerical results accurately predict the evaporation rate of biodiesel when compared to experimental results, with maximum deviations of the evaporation of 15.2%. Results show that Castor oil biodiesel evaporation rate is 48% lower than that for Palm oil biodiesel at the studied temperatures. This is explained by its higher density and vaporization enthalpy, which can be traced back to the structure of the fuel components.http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0122-53832017000100083&lng=en&tlng=enBiodieselDroplet EvaporationD2 LawEvaporation Rate
spellingShingle M.L Botero
A. Molina
Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
CT&F Ciencia, Tecnología & Futuro
Biodiesel
Droplet Evaporation
D2 Law
Evaporation Rate
title Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
title_full Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
title_fullStr Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
title_full_unstemmed Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
title_short Experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
title_sort experimental and numerical study of palm oil and castor oil biodiesel droplet evaporation
topic Biodiesel
Droplet Evaporation
D2 Law
Evaporation Rate
url http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0122-53832017000100083&lng=en&tlng=en
work_keys_str_mv AT mlbotero experimentalandnumericalstudyofpalmoilandcastoroilbiodieseldropletevaporation
AT amolina experimentalandnumericalstudyofpalmoilandcastoroilbiodieseldropletevaporation