Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution

The main aim of this paper pivoted around the influence of some parameters relevant to biomass pyrolysis on the numerical solutions of the n th order distributed activation energy model (DAEM) using the Gamma distribution. The upper limit of ‘dE’ integral, frequency factor, reaction order, and the...

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Main Authors: Alok Dhaundiyal, Suraj Singh
Format: Article
Language:English
Published: Pontificia Universidad Javeriana 2017-12-01
Series:Universitas Scientiarum
Subjects:
Online Access:http://revistas.javeriana.edu.co/index.php/scientarium/article/view/18827/16230
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author Alok Dhaundiyal
Suraj Singh
author_facet Alok Dhaundiyal
Suraj Singh
author_sort Alok Dhaundiyal
collection DOAJ
description The main aim of this paper pivoted around the influence of some parameters relevant to biomass pyrolysis on the numerical solutions of the n th order distributed activation energy model (DAEM) using the Gamma distribution. The upper limit of ‘dE’ integral, frequency factor, reaction order, and the shape and rate parameters of the Gamma distribution are investigated. Analysis of the mathematical model is done with the help of asymptotic expansion.
format Article
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institution DOAJ
issn 0122-7483
2027-1352
language English
publishDate 2017-12-01
publisher Pontificia Universidad Javeriana
record_format Article
series Universitas Scientiarum
spelling doaj-art-c9b6499a638143d89989bfba8b57fd862025-08-20T03:23:57ZengPontificia Universidad JaverianaUniversitas Scientiarum0122-74832027-13522017-12-0122326328410.11144/Javeriana.SC22-3.aattAsymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma DistributionAlok Dhaundiyal0Suraj Singh1Szent Istvan University, Mechanical Engineering PhD School, Faculty of Mechanical Engineering, Godollo, HungaryDepartment of Mathematics, Statistics and Computer Science, Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand, India.The main aim of this paper pivoted around the influence of some parameters relevant to biomass pyrolysis on the numerical solutions of the n th order distributed activation energy model (DAEM) using the Gamma distribution. The upper limit of ‘dE’ integral, frequency factor, reaction order, and the shape and rate parameters of the Gamma distribution are investigated. Analysis of the mathematical model is done with the help of asymptotic expansion.http://revistas.javeriana.edu.co/index.php/scientarium/article/view/18827/16230Asymptotic expansionGamma distributionbiomass pyrolysisdistributed activation energy model.
spellingShingle Alok Dhaundiyal
Suraj Singh
Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution
Universitas Scientiarum
Asymptotic expansion
Gamma distribution
biomass pyrolysis
distributed activation energy model.
title Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution
title_full Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution
title_fullStr Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution
title_full_unstemmed Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution
title_short Asymptotic Approximations to the Isothermal Pyrolysis of Deodara Leaves using Gamma Distribution
title_sort asymptotic approximations to the isothermal pyrolysis of deodara leaves using gamma distribution
topic Asymptotic expansion
Gamma distribution
biomass pyrolysis
distributed activation energy model.
url http://revistas.javeriana.edu.co/index.php/scientarium/article/view/18827/16230
work_keys_str_mv AT alokdhaundiyal asymptoticapproximationstotheisothermalpyrolysisofdeodaraleavesusinggammadistribution
AT surajsingh asymptoticapproximationstotheisothermalpyrolysisofdeodaraleavesusinggammadistribution