Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel

A biomass pellet rotary burner was chosen as the research object, in order to study the influence of excess air coefficient on the combustion phenomenon of biomass rotary burner, the finite element simulation model of a biomass rotary burner was established, and simulation results of a biomass rotar...

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Main Authors: Guohai Jia, Lijun Li, D. M. Zhang
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Journal of Chemistry
Online Access:http://dx.doi.org/10.1155/2020/3618382
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spelling doaj-82a52149630d439a89fdf42e1ce8ec532020-11-25T03:15:36ZengHindawi LimitedJournal of Chemistry2090-90632090-90712020-01-01202010.1155/2020/36183823618382Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet FuelGuohai Jia0Lijun Li1D. M. Zhang2College of Mechanical and Electrical Engineering, Central South University of Forestry and Technology, Changsha 410004, ChinaCollege of Mechanical and Electrical Engineering, Central South University of Forestry and Technology, Changsha 410004, ChinaDepartment of Industrial Technology, California State University, Fresno, CA 93740-8002, USAA biomass pellet rotary burner was chosen as the research object, in order to study the influence of excess air coefficient on the combustion phenomenon of biomass rotary burner, the finite element simulation model of a biomass rotary burner was established, and simulation results of a biomass rotary burner were verified by the experiment. The computational fluid dynamics software was applied to simulate the combustion characteristics of biomass rotary burner in a steady-state condition, and the effect of excess air coefficient on temperature field and component concentration field in biomass rotary burner was analyzed. The results show that the flue gas flow rate inside the burner gradually increases with the increase of air velocity, the area with large temperature is mainly concentrated in the middle region of the rotary burner, and the maximum combustion temperature also appeared in the middle region of the combustion chamber, and the formation area of CO decreases with the increase of excess air coefficient. CO2 is mainly concentrated in the middle region of the burner, and the CO2 generating region decreases with the increase of excess air coefficient. The experimental value of the combustion temperature of the biomass rotary burner is in good agreement with the simulation results.http://dx.doi.org/10.1155/2020/3618382
collection DOAJ
language English
format Article
sources DOAJ
author Guohai Jia
Lijun Li
D. M. Zhang
spellingShingle Guohai Jia
Lijun Li
D. M. Zhang
Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel
Journal of Chemistry
author_facet Guohai Jia
Lijun Li
D. M. Zhang
author_sort Guohai Jia
title Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel
title_short Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel
title_full Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel
title_fullStr Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel
title_full_unstemmed Effect Analysis on Combustion and Emission Characteristics of a Rotary Burner Fueled by Biomass Pellet Fuel
title_sort effect analysis on combustion and emission characteristics of a rotary burner fueled by biomass pellet fuel
publisher Hindawi Limited
series Journal of Chemistry
issn 2090-9063
2090-9071
publishDate 2020-01-01
description A biomass pellet rotary burner was chosen as the research object, in order to study the influence of excess air coefficient on the combustion phenomenon of biomass rotary burner, the finite element simulation model of a biomass rotary burner was established, and simulation results of a biomass rotary burner were verified by the experiment. The computational fluid dynamics software was applied to simulate the combustion characteristics of biomass rotary burner in a steady-state condition, and the effect of excess air coefficient on temperature field and component concentration field in biomass rotary burner was analyzed. The results show that the flue gas flow rate inside the burner gradually increases with the increase of air velocity, the area with large temperature is mainly concentrated in the middle region of the rotary burner, and the maximum combustion temperature also appeared in the middle region of the combustion chamber, and the formation area of CO decreases with the increase of excess air coefficient. CO2 is mainly concentrated in the middle region of the burner, and the CO2 generating region decreases with the increase of excess air coefficient. The experimental value of the combustion temperature of the biomass rotary burner is in good agreement with the simulation results.
url http://dx.doi.org/10.1155/2020/3618382
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