Energetic analysis on AP-X process for liquefaction of natural gas using open source software

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Main Author: Mohd Khairulnazreen, Zahari
Other Authors: Mohd Nazri, Omar
Format: Learning Object
Language:English
Published: Universiti Malaysia Perlis (UniMAP) 2021
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Online Access:http://dspace.unimap.edu.my:80/xmlui/handle/123456789/69835
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Institution: Universiti Malaysia Perlis
Language: English
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spelling my.unimap-698352021-02-24T05:26:58Z Energetic analysis on AP-X process for liquefaction of natural gas using open source software Mohd Khairulnazreen, Zahari Mohd Nazri, Omar Liquefaction Natural gas DWSIM Access is limited to UniMAP community. The main objective of this thesis is to model a single mixed refrigerant process for offshore natural gas liquefaction using DWSIM as a simulation tools. Liquefied Natural Gas (LNG) in the energy sector is seen as a realistic source for providing cleaner, small to large scale fuel, due to the ever-increasing global environmental protection and high demand of electricity at a competitive rate. In this work, several LNG processes existing and prospective ones are analysed thermodynamically. Due to the growing demand for natural gas in the world today, transporting natural gas from different parts of the world has become a necessity. Liquefying natural gas provides a safer alternative and less expensive to transport, and to increase its storage capacity. The liquefaction process requires natural gas to be cooled using a variety of methods and cryogenic process also depressurized to atmospheric conditions for easier storage and safer. This thesis analyzes the AP-X process for liquefaction of natural gas. The ability AP-X process is analyzed in this study is assumed to be in Qatar. To analyzes the related of thermodynamic factors, the DWSIM software was used to obtain the result. The DWSIM process model was neither accurate nor robust enough to be well suited for optimization and detailed analysis of the AP-X process. With regards to further work, it is recommended to rebuild the model using alternative simulation software, preferably providing a higher level of transparency with respect to process equations and optimization procedures. A self-optimizing control structure for the process was not determined in this thesis, but the procedures and simplifying assumptions were discussed and achieved the final value Coefficient of Performance (COP) at 0.07. 2021-02-24T05:26:58Z 2021-02-24T05:26:58Z 2016-06 Learning Object http://dspace.unimap.edu.my:80/xmlui/handle/123456789/69835 en Universiti Malaysia Perlis (UniMAP)
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Liquefaction
Natural gas
DWSIM
spellingShingle Liquefaction
Natural gas
DWSIM
Mohd Khairulnazreen, Zahari
Energetic analysis on AP-X process for liquefaction of natural gas using open source software
description Access is limited to UniMAP community.
author2 Mohd Nazri, Omar
author_facet Mohd Nazri, Omar
Mohd Khairulnazreen, Zahari
format Learning Object
author Mohd Khairulnazreen, Zahari
author_sort Mohd Khairulnazreen, Zahari
title Energetic analysis on AP-X process for liquefaction of natural gas using open source software
title_short Energetic analysis on AP-X process for liquefaction of natural gas using open source software
title_full Energetic analysis on AP-X process for liquefaction of natural gas using open source software
title_fullStr Energetic analysis on AP-X process for liquefaction of natural gas using open source software
title_full_unstemmed Energetic analysis on AP-X process for liquefaction of natural gas using open source software
title_sort energetic analysis on ap-x process for liquefaction of natural gas using open source software
publisher Universiti Malaysia Perlis (UniMAP)
publishDate 2021
url http://dspace.unimap.edu.my:80/xmlui/handle/123456789/69835
_version_ 1698698271176785920