Solution of the reverse flow reactor model using homotopy analysis method

Methane (CH4) is one of the most dangerous greenhouse gases in the atmosphere. A reverse flow reactor is utilized to convert CH4 to carbon dioxide (CO2) as a means of reducing the effect of global warming. The dynamics of its dependent variables can be stated by a set of convective-diffusion equatio...

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Bibliographic Details
Main Authors: Suharsono, Suharsono, Wulandari, Sri, Nuryaman, Aang, Usman, Mustofa, Wamiliana, Wamiliana, Daoud, Jamal Ibrahim
Format: Article
Language:English
English
Published: IIUM Press, International Islamic University Malaysia 2021
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Online Access:http://irep.iium.edu.my/87635/1/87635_Solution%20of%20the%20reverse%20flow%20reactor%20model%20using%20HOMOTOPY%20%20analysis%20method.pdf
http://irep.iium.edu.my/87635/7/87635_Solution%20of%20the%20reverse%20flow%20reactor%20model_Scopus.pdf
http://irep.iium.edu.my/87635/
https://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/1398/775
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Summary:Methane (CH4) is one of the most dangerous greenhouse gases in the atmosphere. A reverse flow reactor is utilized to convert CH4 to carbon dioxide (CO2) as a means of reducing the effect of global warming. The dynamics of its dependent variables can be stated by a set of convective-diffusion equations. In this article, we examined analytical solutions of temperature dynamics and methane conversion for a 1-D pseudo homogeneous model without refrigeration by using the homotopy analysis method. The results show that temperature and conversion of methane will go to constant when time goes to infinity. *********************************************************************************Metana (CH4) merupakan salah satu gas rumah hijau paling berbahaya di atmosfera. Reaktor aliran balik telah dipakai bagi menukar CH4 kepada CO2 bagi mengurangkan kesan pemanasan global. Dinamik pemboleh ubah bersandar ini dapat diterangkan melalui satu set persamaan konvektif-difusi. Artikel ini akan mengkaji penyelesaian analisis dinamik suhu dan penukaran metana bagi model 1-D pseudo-homogen tanpa penyejukan dengan menggunakan kaedah analisis homotopi. Hasil kajian menunjukkan bahawa suhu dan penukaran metana akan berterusan dengan masa tak terhingga.