Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier

The main advantage of a fluidized bed is its capability in excellent gas-fuel mixing. However, due to the lacks of gas radial momentum, its lateral mixing of gas-solid is not adequate. Therefore, this research is focused on fluidized bed hydrodynamics enhancement using the modified gas distributor p...

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Main Authors: Afrooz, I.E., Chuan Ching, D.L.
Format: Article
Published: Materials and Energy Research Center 2019
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85079235706&doi=10.5829%2fije.2019.32.10a.04&partnerID=40&md5=c4c88fa7640b16f65ad22cf86a040fad
http://eprints.utp.edu.my/30242/
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spelling my.utp.eprints.302422022-03-25T06:39:25Z Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier Afrooz, I.E. Chuan Ching, D.L. The main advantage of a fluidized bed is its capability in excellent gas-fuel mixing. However, due to the lacks of gas radial momentum, its lateral mixing of gas-solid is not adequate. Therefore, this research is focused on fluidized bed hydrodynamics enhancement using the modified gas distributor plate design. For getting an optimum fluidized bed hydrodynamics prediction, three different classical ANSYS Fluent drag models, namely Wen-Yu, Syamlal O'Brien, and Gidaspow are examined first. Afterward, a novel distributor plate called swirl distributor plate (SDP) is proposed in order to enhance the gas-fuel mixing in vertical and radial directions. In terms of simulation approach, results were presented and compared with the experimental data. It has been observed that better hydrodynamics prediction is achieved by Syamlal O'Brien drag model. The effect of SDP on gas-solid mixing was then studied numerically and compared with conventional distributor plate (CDP). Compared with CDP, better gas-solid mixing was found while the SDP was used. As a final point, gasification test was conducted in a lab scale system in order to study and compare the composition of produced syngas using both distributor plates. Based on the gasification results, SDP leads to promotion of Hydrogen and Carbon monoxide by 34.85 and 65.92 percent, respectively. © 2019 Materials and Energy Research Center. All rights reserved. Materials and Energy Research Center 2019 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85079235706&doi=10.5829%2fije.2019.32.10a.04&partnerID=40&md5=c4c88fa7640b16f65ad22cf86a040fad Afrooz, I.E. and Chuan Ching, D.L. (2019) Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier. International Journal of Engineering, Transactions A: Basics, 32 (10). pp. 1358-1365. http://eprints.utp.edu.my/30242/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description The main advantage of a fluidized bed is its capability in excellent gas-fuel mixing. However, due to the lacks of gas radial momentum, its lateral mixing of gas-solid is not adequate. Therefore, this research is focused on fluidized bed hydrodynamics enhancement using the modified gas distributor plate design. For getting an optimum fluidized bed hydrodynamics prediction, three different classical ANSYS Fluent drag models, namely Wen-Yu, Syamlal O'Brien, and Gidaspow are examined first. Afterward, a novel distributor plate called swirl distributor plate (SDP) is proposed in order to enhance the gas-fuel mixing in vertical and radial directions. In terms of simulation approach, results were presented and compared with the experimental data. It has been observed that better hydrodynamics prediction is achieved by Syamlal O'Brien drag model. The effect of SDP on gas-solid mixing was then studied numerically and compared with conventional distributor plate (CDP). Compared with CDP, better gas-solid mixing was found while the SDP was used. As a final point, gasification test was conducted in a lab scale system in order to study and compare the composition of produced syngas using both distributor plates. Based on the gasification results, SDP leads to promotion of Hydrogen and Carbon monoxide by 34.85 and 65.92 percent, respectively. © 2019 Materials and Energy Research Center. All rights reserved.
format Article
author Afrooz, I.E.
Chuan Ching, D.L.
spellingShingle Afrooz, I.E.
Chuan Ching, D.L.
Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
author_facet Afrooz, I.E.
Chuan Ching, D.L.
author_sort Afrooz, I.E.
title Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
title_short Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
title_full Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
title_fullStr Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
title_full_unstemmed Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
title_sort effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier
publisher Materials and Energy Research Center
publishDate 2019
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85079235706&doi=10.5829%2fije.2019.32.10a.04&partnerID=40&md5=c4c88fa7640b16f65ad22cf86a040fad
http://eprints.utp.edu.my/30242/
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score 13.18916