Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation
CZU: 536.26+536.4
Authors:
Das, Kalidas; Acharya, Nilangshu; Duari, Pinaki Ranjan
Summary:
A study has been carried out to obtain solutions for heat and mass transfer in a forced magnetohydrodynamic convective flow of an electrically conducting incompressible fluid over a permeable flat plate embedded in a porous medium with thermal convective surface boundary conditions due to thermal radiation, temperature dependent viscosity, and thermal conductivity taking into account the first-order homogeneous chemical reaction. A scaling group of transformations has been applied to the governing equations. The transformed self-similar nonlinear ordinary differential equations, along with the boundary conditions, have been solved numerically using a fourth-order Runge–Kutta method and a Shooting technique. The effect of various relevant parameters on the flow field, temperature, concentration, wall skin friction, heat flux, and wall mass flux has been elucidated through graphs and tables. A comparison with previously published results has been presented.
Export Metadata
Google Scholar
<meta name="citation_title" content="<p>Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation </p>"> <meta name="citation_author" content="Das, Kalidas"> <meta name="citation_author" content="Acharya, Nilangshu"> <meta name="citation_author" content="Duari, Pinaki Ranjan"> <meta name="citation_publication_date" content="2017/07/03"> <meta name="citation_journal_title" content="Moldavian Journal of the Physical Sciences"> <meta name="citation_volume" content="16"> <meta name="citation_issue" content="1-2"> <meta name="citation_firstpage" content="46"> <meta name="citation_lastpage" content="63"> <meta name="citation_pdf_url" content="https://ibn.idsi.md/sites/default/files/imag_file/46-63.pdf">
Crossref
<?xml version='1.0' encoding='utf-8'?> <doi_batch version='4.3.7' xmlns='http://www.crossref.org/schema/4.3.7' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xsi:schemaLocation='http://www.crossref.org/schema/4.3.7 http://www.crossref.org/schema/deposit/crossref4.3.7.xsd'> <head> <doi_batch_id>ibn-71451</doi_batch_id> <timestamp>1597482413</timestamp> <depositor> <depositor_name>Information Society Development Instiute, Republic of Moldova</depositor_name> <email_address>mjps@nanotech.md</email_address> </depositor> <registrant>Institutul de Inginerie Electronică şi Nanotehnologii "D. Ghiţu" al AŞM</registrant> </head> <body> <journal> <journal_metadata> <full_title>Moldavian Journal of the Physical Sciences</full_title> <issn media_type='print'>1810648X</issn> </journal_metadata> <journal_issue> <publication_date media_type='print'> <year>2017</year> </publication_date> <issue>1-2(16)</issue> </journal_issue> <journal_article publication_type='full_text'><titles> <title><p>Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation </p></title> </titles> <contributors> <person_name sequence='first' contributor_role='author'> <given_name>Kalidas</given_name> <surname>Das</surname> </person_name> <person_name sequence='additional' contributor_role='author'> <given_name>Nilangshu</given_name> <surname>Acharya</surname> </person_name> <person_name sequence='additional' contributor_role='author'> <given_name>Pinaki Ranjan</given_name> <surname>Duari</surname> </person_name> </contributors> <publication_date media_type='print'> <year>2017</year> </publication_date> <pages> <first_page>46</first_page> <last_page>63</last_page> </pages> </journal_article> </journal> </body> </doi_batch>
CERIF
<?xml version='1.0' encoding='utf-8'?> <CERIF xmlns='urn:xmlns:org:eurocris:cerif-1.5-1' xsi:schemaLocation='urn:xmlns:org:eurocris:cerif-1.5-1 http://www.eurocris.org/Uploads/Web%20pages/CERIF-1.5/CERIF_1.5_1.xsd' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' release='1.5' date='2012-10-07' sourceDatabase='Output Profile'> <cfResPubl> <cfResPublId>ibn-ResPubl-71451</cfResPublId> <cfResPublDate>2017-07-03</cfResPublDate> <cfVol>16</cfVol> <cfIssue>1-2</cfIssue> <cfStartPage>46</cfStartPage> <cfISSN>1810-648X</cfISSN> <cfURI>http://mjps.utm.md/archive/2017/article/71451</cfURI> <cfTitle cfLangCode='EN' cfTrans='o'><p>Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation </p></cfTitle> <cfAbstr cfLangCode='EN' cfTrans='o'><p>A study has been carried out to obtain solutions for heat and mass transfer in a forced magnetohydrodynamic convective flow of an electrically conducting incompressible fluid over a permeable flat plate embedded in a porous medium with thermal convective surface boundary conditions due to thermal radiation, temperature dependent viscosity, and thermal conductivity taking into account the first-order homogeneous chemical reaction. A scaling group of transformations has been applied to the governing equations. The transformed self-similar nonlinear ordinary differential equations, along with the boundary conditions, have been solved numerically using a fourth-order Runge–Kutta method and a Shooting technique. The effect of various relevant parameters on the flow field, temperature, concentration, wall skin friction, heat flux, and wall mass flux has been elucidated through graphs and tables. A comparison with previously published results has been presented.</p></cfAbstr> <cfResPubl_Class> <cfClassId>eda2d9e9-34c5-11e1-b86c-0800200c9a66</cfClassId> <cfClassSchemeId>759af938-34ae-11e1-b86c-0800200c9a66</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> </cfResPubl_Class> <cfResPubl_Class> <cfClassId>e601872f-4b7e-4d88-929f-7df027b226c9</cfClassId> <cfClassSchemeId>40e90e2f-446d-460a-98e5-5dce57550c48</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> </cfResPubl_Class> <cfPers_ResPubl> <cfPersId>ibn-person-35215</cfPersId> <cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId> <cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> </cfPers_ResPubl> <cfPers_ResPubl> <cfPersId>ibn-person-61300</cfPersId> <cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId> <cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> </cfPers_ResPubl> <cfPers_ResPubl> <cfPersId>ibn-person-61301</cfPersId> <cfClassId>49815870-1cfe-11e1-8bc2-0800200c9a66</cfClassId> <cfClassSchemeId>b7135ad0-1d00-11e1-8bc2-0800200c9a66</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> </cfPers_ResPubl> </cfResPubl> <cfPers> <cfPersId>ibn-Pers-35215</cfPersId> <cfPersName_Pers> <cfPersNameId>ibn-PersName-35215-3</cfPersNameId> <cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId> <cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> <cfFamilyNames>Das</cfFamilyNames> <cfFirstNames>Kalidas</cfFirstNames> </cfPersName_Pers> </cfPers> <cfPers> <cfPersId>ibn-Pers-61300</cfPersId> <cfPersName_Pers> <cfPersNameId>ibn-PersName-61300-3</cfPersNameId> <cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId> <cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> <cfFamilyNames>Acharya</cfFamilyNames> <cfFirstNames>Nilangshu</cfFirstNames> </cfPersName_Pers> </cfPers> <cfPers> <cfPersId>ibn-Pers-61301</cfPersId> <cfPersName_Pers> <cfPersNameId>ibn-PersName-61301-3</cfPersNameId> <cfClassId>55f90543-d631-42eb-8d47-d8d9266cbb26</cfClassId> <cfClassSchemeId>7375609d-cfa6-45ce-a803-75de69abe21f</cfClassSchemeId> <cfStartDate>2017-07-03T24:00:00</cfStartDate> <cfFamilyNames>Duari</cfFamilyNames> <cfFirstNames>Pinaki Ranjan</cfFirstNames> </cfPersName_Pers> </cfPers> </CERIF>
BibTeX
@article{ibn_71451,
author = {Das, K. and Acharya, N. and Duari, P.},
title = {<p>Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation </p>},
journal = {Moldavian Journal of the Physical Sciences},
year = {2017},
volume = {16 (1-2)},
pages = {46-63},
month = {Jul},
abstract = {(EN) <p>A study has been carried out to obtain solutions for heat and mass transfer in a forced magnetohydrodynamic convective flow of an electrically conducting incompressible fluid over a permeable flat plate embedded in a porous medium with thermal convective surface boundary conditions due to thermal radiation, temperature dependent viscosity, and thermal conductivity taking into account the first-order homogeneous chemical reaction. A scaling group of transformations has been applied to the governing equations. The transformed self-similar nonlinear ordinary differential equations, along with the boundary conditions, have been solved numerically using a fourth-order Runge–Kutta method and a Shooting technique. The effect of various relevant parameters on the flow field, temperature, concentration, wall skin friction, heat flux, and wall mass flux has been elucidated through graphs and tables. A comparison with previously published results has been presented.</p>},
url = {https://ibn.idsi.md/vizualizare_articol/71451},
}
DataCite
<?xml version='1.0' encoding='utf-8'?> <resource xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xmlns='http://datacite.org/schema/kernel-3' xsi:schemaLocation='http://datacite.org/schema/kernel-3 http://schema.datacite.org/meta/kernel-3/metadata.xsd'> <creators> <creator> <creatorName>Das, K.</creatorName> <affiliation>Department of Mathematics, A.B.N.Seal College, India</affiliation> </creator> <creator> <creatorName>Acharya, N.</creatorName> <affiliation>Department of Mathematics, P.R. Thakur Govt. College, Gaighata, India</affiliation> </creator> <creator> <creatorName>Duari, P.</creatorName> <affiliation>Department of Mathematics, Asansol Engineering College, India</affiliation> </creator> </creators> <titles> <title xml:lang='en'><p>Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation </p></title> </titles> <publisher>Instrumentul Bibliometric National</publisher> <publicationYear>2017</publicationYear> <relatedIdentifier relatedIdentifierType='ISSN' relationType='IsPartOf'>1810-648X</relatedIdentifier> <subjects> <subject schemeURI='http://udcdata.info/' subjectScheme='UDC'>536.26+536.4</subject> </subjects> <dates> <date dateType='Issued'>2017-07-03</date> </dates> <resourceType resourceTypeGeneral='Text'>Journal article</resourceType> <descriptions> <description xml:lang='en' descriptionType='Abstract'><p>A study has been carried out to obtain solutions for heat and mass transfer in a forced magnetohydrodynamic convective flow of an electrically conducting incompressible fluid over a permeable flat plate embedded in a porous medium with thermal convective surface boundary conditions due to thermal radiation, temperature dependent viscosity, and thermal conductivity taking into account the first-order homogeneous chemical reaction. A scaling group of transformations has been applied to the governing equations. The transformed self-similar nonlinear ordinary differential equations, along with the boundary conditions, have been solved numerically using a fourth-order Runge–Kutta method and a Shooting technique. The effect of various relevant parameters on the flow field, temperature, concentration, wall skin friction, heat flux, and wall mass flux has been elucidated through graphs and tables. A comparison with previously published results has been presented.</p></description> </descriptions> <formats> <format>application/pdf</format> </formats> </resource>
Dublin Core
<?xml version='1.0' encoding='utf-8'?> <oai_dc:dc xmlns:dc='http://purl.org/dc/elements/1.1/' xmlns:oai_dc='http://www.openarchives.org/OAI/2.0/oai_dc/' xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xsi:schemaLocation='http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd'> <dc:creator>Das, K.</dc:creator> <dc:creator>Acharya, N.</dc:creator> <dc:creator>Duari, P.</dc:creator> <dc:date>2017-07-03</dc:date> <dc:description xml:lang='en'><p>A study has been carried out to obtain solutions for heat and mass transfer in a forced magnetohydrodynamic convective flow of an electrically conducting incompressible fluid over a permeable flat plate embedded in a porous medium with thermal convective surface boundary conditions due to thermal radiation, temperature dependent viscosity, and thermal conductivity taking into account the first-order homogeneous chemical reaction. A scaling group of transformations has been applied to the governing equations. The transformed self-similar nonlinear ordinary differential equations, along with the boundary conditions, have been solved numerically using a fourth-order Runge–Kutta method and a Shooting technique. The effect of various relevant parameters on the flow field, temperature, concentration, wall skin friction, heat flux, and wall mass flux has been elucidated through graphs and tables. A comparison with previously published results has been presented.</p></dc:description> <dc:source>Moldavian Journal of the Physical Sciences 16 (1-2) 46-63</dc:source> <dc:title><p>Forced convective flow over a porous plate with variable fluid properties and chemical reaction: an application of the lie group transformation </p></dc:title> <dc:type>info:eu-repo/semantics/article</dc:type> </oai_dc:dc>