Diffusion combustion of liquid heptane in a small tube with and without heat recirculating

In order to understand diffusion flame characteristics in a small tube, combustion of liquid n-heptane and air was experimentally and numerically studied. A tube of ID 4mm and OD 6mm made of quartz was used as the burner. Liquid n-heptane was delivered into a capillary from a syringe pump. Stable...

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Main Authors: Li, Junwei, Huang, Jinghuai, Zhao, Dan, Zhao, Junying, Yan, Mi, Wang, Ningfei
Other Authors: School of Mechanical and Aerospace Engineering
Format: Article
Language:English
Published: 2013
Online Access:https://hdl.handle.net/10356/96734
http://hdl.handle.net/10220/13083
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-967342020-03-07T13:19:21Z Diffusion combustion of liquid heptane in a small tube with and without heat recirculating Li, Junwei Huang, Jinghuai Zhao, Dan Zhao, Junying Yan, Mi Wang, Ningfei School of Mechanical and Aerospace Engineering In order to understand diffusion flame characteristics in a small tube, combustion of liquid n-heptane and air was experimentally and numerically studied. A tube of ID 4mm and OD 6mm made of quartz was used as the burner. Liquid n-heptane was delivered into a capillary from a syringe pump. Stable flames were established inside the burner with and without heat recirculating. Additionally, numerical simulations were conducted, and effects of equivalence ratio and external heat loss coefficient on diffusion flame were studied. Results show that, for a diffusion flame of liquid n-heptane in a small tube, as fuel flow rate increases, the flammable limits increase. The diffusion flame position moves downstream with increasing air flow, eventually stabilizing at the bottom of the outer tube until extinction. When the flame passes in the tube, the peak temperature would occur on the wall. If there is heat recirculating, the wall temperature of the inner tube is higher than the boiling point of liquid n-heptane. It is conducive to the pre-evaporation of liquid n-heptane. In contrast, if there is no heat recirculating, liquid fuel will be accumulated in the tube. The heat loss coefficient has a great influence on flammable limits of the tube burner without heat recirculating. 2013-08-12T08:39:46Z 2019-12-06T19:34:23Z 2013-08-12T08:39:46Z 2019-12-06T19:34:23Z 2012 2012 Journal Article Li, J., Huang, J., Zhao, D., Zhao, J., Yan, M.,& Wang, N. (2012). Diffusion Combustion of Liquid Heptane in a Small Tube with and without Heat Recirculating. Combustion Science and Technology, 184(10-11), 1591-1607. https://hdl.handle.net/10356/96734 http://hdl.handle.net/10220/13083 10.1080/00102202.2012.690673 en Combustion science and technology
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
description In order to understand diffusion flame characteristics in a small tube, combustion of liquid n-heptane and air was experimentally and numerically studied. A tube of ID 4mm and OD 6mm made of quartz was used as the burner. Liquid n-heptane was delivered into a capillary from a syringe pump. Stable flames were established inside the burner with and without heat recirculating. Additionally, numerical simulations were conducted, and effects of equivalence ratio and external heat loss coefficient on diffusion flame were studied. Results show that, for a diffusion flame of liquid n-heptane in a small tube, as fuel flow rate increases, the flammable limits increase. The diffusion flame position moves downstream with increasing air flow, eventually stabilizing at the bottom of the outer tube until extinction. When the flame passes in the tube, the peak temperature would occur on the wall. If there is heat recirculating, the wall temperature of the inner tube is higher than the boiling point of liquid n-heptane. It is conducive to the pre-evaporation of liquid n-heptane. In contrast, if there is no heat recirculating, liquid fuel will be accumulated in the tube. The heat loss coefficient has a great influence on flammable limits of the tube burner without heat recirculating.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Li, Junwei
Huang, Jinghuai
Zhao, Dan
Zhao, Junying
Yan, Mi
Wang, Ningfei
format Article
author Li, Junwei
Huang, Jinghuai
Zhao, Dan
Zhao, Junying
Yan, Mi
Wang, Ningfei
spellingShingle Li, Junwei
Huang, Jinghuai
Zhao, Dan
Zhao, Junying
Yan, Mi
Wang, Ningfei
Diffusion combustion of liquid heptane in a small tube with and without heat recirculating
author_sort Li, Junwei
title Diffusion combustion of liquid heptane in a small tube with and without heat recirculating
title_short Diffusion combustion of liquid heptane in a small tube with and without heat recirculating
title_full Diffusion combustion of liquid heptane in a small tube with and without heat recirculating
title_fullStr Diffusion combustion of liquid heptane in a small tube with and without heat recirculating
title_full_unstemmed Diffusion combustion of liquid heptane in a small tube with and without heat recirculating
title_sort diffusion combustion of liquid heptane in a small tube with and without heat recirculating
publishDate 2013
url https://hdl.handle.net/10356/96734
http://hdl.handle.net/10220/13083
_version_ 1681046680745541632