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Numerical analysis on effect of furnace scale on heat transfer mechanism of coal particles in pulverized coal combustion field

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Title: Numerical analysis on effect of furnace scale on heat transfer mechanism of coal particles in pulverized coal combustion field
Authors: Hashimoto, Nozomu Browse this author
Watanabe, Hiroaki Browse this author
Keywords: Coal combustion
Numerical simulation
Boiler
Furnace scale
Heat transfer mechanism
Particle
Issue Date: May-2016
Publisher: Elsevier
Journal Title: Fuel Processing Technology
Volume: 145
Start Page: 20
End Page: 30
Publisher DOI: 10.1016/j.fuproc.2016.01.024
Abstract: To investigate the effect of the furnace scale on the heat transfer mechanism of coal particles, numerical simulations of coal combustion fields in three different scale furnaces (915 MWth actual large scale boiler, 2.4 MWth and 0.76 MWth test furnaces) were conducted. High accuracy of simulation methods was validated with the measured data. From the comparison of numerical simulations between three different scale furnaces, it was clarified that the particle residence time with high particle temperature for a small scale furnace is shorter than that for a large scale furnace even if the particle residence time passing the high temperature gas is the same. This is caused by the insufficient heat gain of particles for a small scale furnace due to the lower radiation heat transfer because of the thinner flame thickness in the small furnace. The sphericity of ash particles from small scale furnaces is lower than that for large scale furnaces due to the shorter particle residence time with high particle temperature. These findings should be considered when the usability of coal brands for actual large scale boilers is evaluated by the fly ash properties from a small scale experimental furnace.
Rights: © 2016. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/
https://creativecommons.org/licenses/by-nc-nd/4.0/
Type: article (author version)
URI: http://hdl.handle.net/2115/70065
Appears in Collections:工学院・工学研究院 (Graduate School of Engineering / Faculty of Engineering) > 雑誌発表論文等 (Peer-reviewed Journal Articles, etc)

Submitter: 橋本 望

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