CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill

This paper presents a three dimensional Computational Fluid Dynamics (CFD) model to investigate the flow dynamics of solid–gas phases during fine grinding in an air jet mill. Alpine 100AFG fluidized bed air jet mill is considered for the study and the jet milling model is simulated using FLUENT 6....

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主要な著者: Munusamy, Sri Raj Rajeswari, Mohd. AzuzliAzizli, Khairun Azizi, Saiyid Hashim, Syed Fuad, Abdullah, Mohd. K, Mohamad, Abdul Mujeebu, Abdullah, Mohd. Zulkifly
フォーマット: Citation Index Journal
出版事項: 2011
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オンライン・アクセス:http://eprints.utp.edu.my/8525/1/CFD_Paper.pdf
http://eprints.utp.edu.my/8525/
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spelling my.utp.eprints.85252017-01-19T08:23:22Z CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill Munusamy, Sri Raj Rajeswari Mohd. AzuzliAzizli, Khairun Azizi Saiyid Hashim, Syed Fuad Abdullah, Mohd. K Mohamad, Abdul Mujeebu Abdullah, Mohd. Zulkifly T Technology (General) This paper presents a three dimensional Computational Fluid Dynamics (CFD) model to investigate the flow dynamics of solid–gas phases during fine grinding in an air jet mill. Alpine 100AFG fluidized bed air jet mill is considered for the study and the jet milling model is simulated using FLUENT 6.3.2 using a standard k-ε model. The model is developed in GAMBIT 2.3.16 and meshed by tet/hybrid (T-Grid) and Triangular (Pave) meshes. The effects of operating parameters such as solid feed rate, grinding air pressure and internal classifier speed on the performance of the jet mill are analyzed. The CFD simulation results are presented in the forms of dual phase vector plot, volume fraction of phases and particle trajectories during fine grinding process. Themass of ground feed entering and leaving the cyclone (underflow) is also computed by simulation. The proposed model gives realistic predictions of the flow dynamics within the jet mill. Experiments are conducted on the Alpine 100AFG jet mill to study the particle size, morphology and mass of the ground product. The numerical results are found in good agreement with the experimental results. 2011 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/8525/1/CFD_Paper.pdf Munusamy, Sri Raj Rajeswari and Mohd. AzuzliAzizli, Khairun Azizi and Saiyid Hashim, Syed Fuad and Abdullah, Mohd. K and Mohamad, Abdul Mujeebu and Abdullah, Mohd. Zulkifly (2011) CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill. [Citation Index Journal] http://eprints.utp.edu.my/8525/
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/
topic T Technology (General)
spellingShingle T Technology (General)
Munusamy, Sri Raj Rajeswari
Mohd. AzuzliAzizli, Khairun Azizi
Saiyid Hashim, Syed Fuad
Abdullah, Mohd. K
Mohamad, Abdul Mujeebu
Abdullah, Mohd. Zulkifly
CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
description This paper presents a three dimensional Computational Fluid Dynamics (CFD) model to investigate the flow dynamics of solid–gas phases during fine grinding in an air jet mill. Alpine 100AFG fluidized bed air jet mill is considered for the study and the jet milling model is simulated using FLUENT 6.3.2 using a standard k-ε model. The model is developed in GAMBIT 2.3.16 and meshed by tet/hybrid (T-Grid) and Triangular (Pave) meshes. The effects of operating parameters such as solid feed rate, grinding air pressure and internal classifier speed on the performance of the jet mill are analyzed. The CFD simulation results are presented in the forms of dual phase vector plot, volume fraction of phases and particle trajectories during fine grinding process. Themass of ground feed entering and leaving the cyclone (underflow) is also computed by simulation. The proposed model gives realistic predictions of the flow dynamics within the jet mill. Experiments are conducted on the Alpine 100AFG jet mill to study the particle size, morphology and mass of the ground product. The numerical results are found in good agreement with the experimental results.
format Citation Index Journal
author Munusamy, Sri Raj Rajeswari
Mohd. AzuzliAzizli, Khairun Azizi
Saiyid Hashim, Syed Fuad
Abdullah, Mohd. K
Mohamad, Abdul Mujeebu
Abdullah, Mohd. Zulkifly
author_facet Munusamy, Sri Raj Rajeswari
Mohd. AzuzliAzizli, Khairun Azizi
Saiyid Hashim, Syed Fuad
Abdullah, Mohd. K
Mohamad, Abdul Mujeebu
Abdullah, Mohd. Zulkifly
author_sort Munusamy, Sri Raj Rajeswari
title CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
title_short CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
title_full CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
title_fullStr CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
title_full_unstemmed CFD simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
title_sort cfd simulation and experimental analysis of flow dynamics and grinding performance of opposed fluidized bed air jet mill
publishDate 2011
url http://eprints.utp.edu.my/8525/1/CFD_Paper.pdf
http://eprints.utp.edu.my/8525/
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