The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor

This research intended to investigate combustion of liquid fuel in 3.5 mm inner diameter quartz glass tube mesocombustor, based on liquid film evaporation by using heat recirculation. The mesocombustor has a copper section for heating and evaporating the liquid fuel. In mesocombustor type A, the fue...

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Main Authors: Achmad Fauzan Hery Soegiharto, I. N. G. Wardana, Lilis Yuliati, Mega Nursasongko
Format: Article
Language:English
Published: Wiley 2017-01-01
Series:Journal of Combustion
Online Access:http://dx.doi.org/10.1155/2017/3679679
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author Achmad Fauzan Hery Soegiharto
I. N. G. Wardana
Lilis Yuliati
Mega Nursasongko
author_facet Achmad Fauzan Hery Soegiharto
I. N. G. Wardana
Lilis Yuliati
Mega Nursasongko
author_sort Achmad Fauzan Hery Soegiharto
collection DOAJ
description This research intended to investigate combustion of liquid fuel in 3.5 mm inner diameter quartz glass tube mesocombustor, based on liquid film evaporation by using heat recirculation. The mesocombustor has a copper section for heating and evaporating the liquid fuel. In mesocombustor type A, the fuel was glided through the narrow canal in the copper wall while the air was glided through the axial of combustor. The flame could only be successfully stabilized in high-ratio equivalent ranging from ɸ  =1.1 to ɸ=1.6, due to the gap without combustion reaction caused by high air-fuel mixture over the limits of flame stability. Mesocombustor type B, which has annulus-shaped canal, could shift the flame stability from ɸ  =0.8 to ɸ  =1.2; however, it also narrowed the limits of flame stability due to the wall cooling. In mesocombustor type C, both liquid fuel and air were glided through the annulus-shaped canal in the copper wall to fix the fuel evaporation and air mixture. The flame of type C was successfully stabilized, from ɸ  =0.73 to ɸ  =1.48 wider than types A and B. The flame of type C mesocombustor is circle-shaped and fitted to cross section of mesocombustor, but it still has thin gap without any flames due to thermal quenching by the wall.
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id doaj-art-37ad1ed55b8a4964a337f250f4b61f26
institution Kabale University
issn 2090-1968
2090-1976
language English
publishDate 2017-01-01
publisher Wiley
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series Journal of Combustion
spelling doaj-art-37ad1ed55b8a4964a337f250f4b61f262025-02-03T05:45:49ZengWileyJournal of Combustion2090-19682090-19762017-01-01201710.1155/2017/36796793679679The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale CombustorAchmad Fauzan Hery Soegiharto0I. N. G. Wardana1Lilis Yuliati2Mega Nursasongko3University of Muhammadiyah Malang, Jalan Raya Tlogomas 246, Malang 65144, IndonesiaUniversity of Brawijaya, Malang, IndonesiaUniversity of Brawijaya, Malang, IndonesiaUniversity of Brawijaya, Malang, IndonesiaThis research intended to investigate combustion of liquid fuel in 3.5 mm inner diameter quartz glass tube mesocombustor, based on liquid film evaporation by using heat recirculation. The mesocombustor has a copper section for heating and evaporating the liquid fuel. In mesocombustor type A, the fuel was glided through the narrow canal in the copper wall while the air was glided through the axial of combustor. The flame could only be successfully stabilized in high-ratio equivalent ranging from ɸ  =1.1 to ɸ=1.6, due to the gap without combustion reaction caused by high air-fuel mixture over the limits of flame stability. Mesocombustor type B, which has annulus-shaped canal, could shift the flame stability from ɸ  =0.8 to ɸ  =1.2; however, it also narrowed the limits of flame stability due to the wall cooling. In mesocombustor type C, both liquid fuel and air were glided through the annulus-shaped canal in the copper wall to fix the fuel evaporation and air mixture. The flame of type C was successfully stabilized, from ɸ  =0.73 to ɸ  =1.48 wider than types A and B. The flame of type C mesocombustor is circle-shaped and fitted to cross section of mesocombustor, but it still has thin gap without any flames due to thermal quenching by the wall.http://dx.doi.org/10.1155/2017/3679679
spellingShingle Achmad Fauzan Hery Soegiharto
I. N. G. Wardana
Lilis Yuliati
Mega Nursasongko
The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor
Journal of Combustion
title The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor
title_full The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor
title_fullStr The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor
title_full_unstemmed The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor
title_short The Role of Liquid Fuels Channel Configuration on the Combustion inside Cylindrical Mesoscale Combustor
title_sort role of liquid fuels channel configuration on the combustion inside cylindrical mesoscale combustor
url http://dx.doi.org/10.1155/2017/3679679
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