IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND OPTIMISATION
C02 removal from natural gas stream is crucial as there are a number of high C02 concentration gas reservoirs in the world. Physical absorption process can be utilised to remove C02 since the feed pressure of natural gas stream is relatively high. However, the excessive footprint of the flash dru...
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my-utp-utpedia.215222021-09-21T20:30:59Z http://utpedia.utp.edu.my/21522/ IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND OPTIMISATION BAN , ZHEN HONG TP Chemical technology C02 removal from natural gas stream is crucial as there are a number of high C02 concentration gas reservoirs in the world. Physical absorption process can be utilised to remove C02 since the feed pressure of natural gas stream is relatively high. However, the excessive footprint of the flash drum has greatly reduced the feasibility for the physical absorption process to be employed at offshore condition. Therefore, a compact in-line physical desorption unit would be designed via numerical modelling approach in current work. However, most of the available numerical modelling approach are not suitable to model the desorption phenomenon. In current work, the bubble nucleation and growth models were integrated with Computational Fluid Dynamics - Population Balance Model (CFD - PBM) to model the non-equilibrium desorption phenomenon. The bubble nucleation and growth models were written as user-defined function (UDF). 2015-09 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/21522/1/2015%20-CHEMICAL%20-%20IN-LINE%20PHYSICAL%20DESORPTION%20UNIT%3BMODELLING%2C%20DESIGN%20AND%20OPTIMISATION%20-%20BAN%20ZHEN%20HONG.pdf BAN , ZHEN HONG (2015) IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND OPTIMISATION. PhD thesis, Universiti Teknologi PETRONAS. |
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TP Chemical technology BAN , ZHEN HONG IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND OPTIMISATION |
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C02 removal from natural gas stream is crucial as there are a number of high
C02 concentration gas reservoirs in the world. Physical absorption process can be
utilised to remove C02 since the feed pressure of natural gas stream is relatively high.
However, the excessive footprint of the flash drum has greatly reduced the feasibility
for the physical absorption process to be employed at offshore condition. Therefore, a
compact in-line physical desorption unit would be designed via numerical modelling
approach in current work. However, most of the available numerical modelling
approach are not suitable to model the desorption phenomenon. In current work, the
bubble nucleation and growth models were integrated with Computational Fluid
Dynamics - Population Balance Model (CFD - PBM) to model the non-equilibrium
desorption phenomenon. The bubble nucleation and growth models were written as
user-defined function (UDF). |
format |
Thesis |
author |
BAN , ZHEN HONG |
author_facet |
BAN , ZHEN HONG |
author_sort |
BAN , ZHEN HONG |
title |
IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND
OPTIMISATION |
title_short |
IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND
OPTIMISATION |
title_full |
IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND
OPTIMISATION |
title_fullStr |
IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND
OPTIMISATION |
title_full_unstemmed |
IN-LINE PHYSICAL DESORPTION UNIT: MODELLING, DESIGN AND
OPTIMISATION |
title_sort |
in-line physical desorption unit: modelling, design and
optimisation |
publishDate |
2015 |
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http://utpedia.utp.edu.my/21522/1/2015%20-CHEMICAL%20-%20IN-LINE%20PHYSICAL%20DESORPTION%20UNIT%3BMODELLING%2C%20DESIGN%20AND%20OPTIMISATION%20-%20BAN%20ZHEN%20HONG.pdf http://utpedia.utp.edu.my/21522/ |
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