Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator

Palm Oil Fuel Ash (POFA) is a pozzolanic material that has great potential in concrete production. POFA sizes range from 1 to 10 μm is preferable. Thus, there is a need for efficient method to separate the POFA according to the sizes needed. This study explores the idea of using a simple wind tunnel...

Full description

Bibliographic Details
Main Authors: Sylvester Kenneth, Sedah, Ana Sakura, Zainal Abidin, Andrew Ragai, Henry Rigit, Mohamed A., Ismail, Raudhah, Ahmadi, Md Abdul, Mannan
Format: Article
Language:English
Published: EDP Sciences 2016
Subjects:
Online Access:http://ir.unimas.my/id/eprint/15178/
http://ir.unimas.my/id/eprint/15178/1/Development%20of%20Wind%20Tunnel%20for%20Ultrafine%20Palm%20Oil%20Fuel%20Ash%20Separator%20%28abstract%29.pdf
_version_ 1848837798815072256
author Sylvester Kenneth, Sedah
Ana Sakura, Zainal Abidin
Andrew Ragai, Henry Rigit
Mohamed A., Ismail
Raudhah, Ahmadi
Md Abdul, Mannan
author_facet Sylvester Kenneth, Sedah
Ana Sakura, Zainal Abidin
Andrew Ragai, Henry Rigit
Mohamed A., Ismail
Raudhah, Ahmadi
Md Abdul, Mannan
author_sort Sylvester Kenneth, Sedah
building UNIMAS Institutional Repository
collection Online Access
description Palm Oil Fuel Ash (POFA) is a pozzolanic material that has great potential in concrete production. POFA sizes range from 1 to 10 μm is preferable. Thus, there is a need for efficient method to separate the POFA according to the sizes needed. This study explores the idea of using a simple wind tunnel as a separator for ultrafine POFA. The existing operation of the wind tunnel is simulated using ANSYS-CFX, a numerical modelling software. The identified weakness of the wind tunnel design is located at the hopper. The wind tunnel is simulated with a different air inlet velocity in order to visualize the air flow profile as well as air flow energy at the hopper. Different air inlet velocities has a similar air flow profile but the air flow intensity is different. For further study the modifications of the air flow profile were conducted. By altering the hopper angle shows that the air flow profile is changed. Based on the simulation results, the hopper at 60° yields the best flow characteristic. At angle 60° of the hopper, the air flow is mostly directed downward into the tunnel and the air flow energy is low. Therefore, it allows the POFA to be directed into the tunnel and reduced the ultrafine POFA losses at the tip of the hopper. This practical method utilizes a simple open wind tunnel that enables the process to be more efficient and cost efficient thus the production of ultrafine POFA can be increased
first_indexed 2025-11-15T06:45:23Z
format Article
id unimas-15178
institution Universiti Malaysia Sarawak
institution_category Local University
language English
last_indexed 2025-11-15T06:45:23Z
publishDate 2016
publisher EDP Sciences
recordtype eprints
repository_type Digital Repository
spelling unimas-151782017-03-23T01:57:04Z http://ir.unimas.my/id/eprint/15178/ Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator Sylvester Kenneth, Sedah Ana Sakura, Zainal Abidin Andrew Ragai, Henry Rigit Mohamed A., Ismail Raudhah, Ahmadi Md Abdul, Mannan TJ Mechanical engineering and machinery Palm Oil Fuel Ash (POFA) is a pozzolanic material that has great potential in concrete production. POFA sizes range from 1 to 10 μm is preferable. Thus, there is a need for efficient method to separate the POFA according to the sizes needed. This study explores the idea of using a simple wind tunnel as a separator for ultrafine POFA. The existing operation of the wind tunnel is simulated using ANSYS-CFX, a numerical modelling software. The identified weakness of the wind tunnel design is located at the hopper. The wind tunnel is simulated with a different air inlet velocity in order to visualize the air flow profile as well as air flow energy at the hopper. Different air inlet velocities has a similar air flow profile but the air flow intensity is different. For further study the modifications of the air flow profile were conducted. By altering the hopper angle shows that the air flow profile is changed. Based on the simulation results, the hopper at 60° yields the best flow characteristic. At angle 60° of the hopper, the air flow is mostly directed downward into the tunnel and the air flow energy is low. Therefore, it allows the POFA to be directed into the tunnel and reduced the ultrafine POFA losses at the tip of the hopper. This practical method utilizes a simple open wind tunnel that enables the process to be more efficient and cost efficient thus the production of ultrafine POFA can be increased EDP Sciences 2016-12-12 Article PeerReviewed text en http://ir.unimas.my/id/eprint/15178/1/Development%20of%20Wind%20Tunnel%20for%20Ultrafine%20Palm%20Oil%20Fuel%20Ash%20Separator%20%28abstract%29.pdf Sylvester Kenneth, Sedah and Ana Sakura, Zainal Abidin and Andrew Ragai, Henry Rigit and Mohamed A., Ismail and Raudhah, Ahmadi and Md Abdul, Mannan (2016) Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator. MATEC Web of Conferences, 87. ISSN 2261236X https://www.scopus.com/inward/record.uri?eid=2-s2.0-85009059989&doi=10.1051%2fmatecconf%2f20178702009&partnerID=40&md5=793f9d476dad0f3b0315d45c2be46154 DOI: 10.1051/matecconf/20178702009
spellingShingle TJ Mechanical engineering and machinery
Sylvester Kenneth, Sedah
Ana Sakura, Zainal Abidin
Andrew Ragai, Henry Rigit
Mohamed A., Ismail
Raudhah, Ahmadi
Md Abdul, Mannan
Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator
title Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator
title_full Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator
title_fullStr Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator
title_full_unstemmed Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator
title_short Development of Wind Tunnel for Ultrafine Palm Oil Fuel Ash Separator
title_sort development of wind tunnel for ultrafine palm oil fuel ash separator
topic TJ Mechanical engineering and machinery
url http://ir.unimas.my/id/eprint/15178/
http://ir.unimas.my/id/eprint/15178/
http://ir.unimas.my/id/eprint/15178/
http://ir.unimas.my/id/eprint/15178/1/Development%20of%20Wind%20Tunnel%20for%20Ultrafine%20Palm%20Oil%20Fuel%20Ash%20Separator%20%28abstract%29.pdf