Numerical analysis including pressure drop in oscillating water column device
Autor(a) principal: | |
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Data de Publicação: | 2015 |
Outros Autores: | , , |
Tipo de documento: | Artigo |
Idioma: | eng |
Título da fonte: | Repositório Institucional da UFRGS |
Texto Completo: | http://hdl.handle.net/10183/122624 |
Resumo: | The wave energy conversion into electricity has been increasingly studied in the last years. There are several proposed converters. Among them, the oscillatingwater column (OWC) device has been widespread evaluated in literature. In this context, the main goal of this work was to perform a comparison between two kinds of physical constraints in the chimney of the OWC device, aiming to represent numerically the pressure drop imposed by the turbine on the air flow inside the OWC. To do so, the conservation equations of mass,momentumand one equation for the transport of volumetric fraction were solved with the finite volume method (FVM). To tackle thewater-air interaction, the multiphase model volume of fluid (VOF)was used. Initially, an asymmetric constraint inserted in chimney duct was reproduced and investigated. Subsequently, a second strategywas proposed,where a symmetric physical constraint with an elliptical shapewas analyzed. Itwas thus possible to establish a strategy to reproduce the pressure drop in OWC devices caused by the presence of the turbine, as well as to generate its characteristic curve. |
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Gomes, Mateus das NevesSantos, Elizaldo Domingues dosIsoldi, Liércio AndréRocha, Luiz Alberto Oliveira2015-08-20T02:33:04Z20152391-5439http://hdl.handle.net/10183/122624000970267The wave energy conversion into electricity has been increasingly studied in the last years. There are several proposed converters. Among them, the oscillatingwater column (OWC) device has been widespread evaluated in literature. In this context, the main goal of this work was to perform a comparison between two kinds of physical constraints in the chimney of the OWC device, aiming to represent numerically the pressure drop imposed by the turbine on the air flow inside the OWC. To do so, the conservation equations of mass,momentumand one equation for the transport of volumetric fraction were solved with the finite volume method (FVM). To tackle thewater-air interaction, the multiphase model volume of fluid (VOF)was used. Initially, an asymmetric constraint inserted in chimney duct was reproduced and investigated. Subsequently, a second strategywas proposed,where a symmetric physical constraint with an elliptical shapewas analyzed. Itwas thus possible to establish a strategy to reproduce the pressure drop in OWC devices caused by the presence of the turbine, as well as to generate its characteristic curve.application/pdfengOpen Engineering [recurso eletrônico]. Warsaw, Poland. Vol. 5, no. 1 (June 2015), p. 229-237Energia das ondasTurbinasVolumes finitosSimulação computacionalOscillating water column (OWC)Numerical modelingVolume of fluid (VOF)Pressure dropTurbineNumerical analysis including pressure drop in oscillating water column deviceEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSTEXT000970267.pdf.txt000970267.pdf.txtExtracted Texttext/plain31838http://www.lume.ufrgs.br/bitstream/10183/122624/2/000970267.pdf.txt3922f18043eee44ee4ed7681db391d75MD52ORIGINAL000970267.pdf000970267.pdfTexto completo (inglês)application/pdf1931260http://www.lume.ufrgs.br/bitstream/10183/122624/1/000970267.pdfd493895bfec47de6a852b1e1972bb938MD51THUMBNAIL000970267.pdf.jpg000970267.pdf.jpgGenerated Thumbnailimage/jpeg2124http://www.lume.ufrgs.br/bitstream/10183/122624/3/000970267.pdf.jpg0be035d8cad42be311ee34b97cca6ddaMD5310183/1226242018-10-09 08:07:16.515oai:www.lume.ufrgs.br:10183/122624Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2018-10-09T11:07:16Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false |
dc.title.pt_BR.fl_str_mv |
Numerical analysis including pressure drop in oscillating water column device |
title |
Numerical analysis including pressure drop in oscillating water column device |
spellingShingle |
Numerical analysis including pressure drop in oscillating water column device Gomes, Mateus das Neves Energia das ondas Turbinas Volumes finitos Simulação computacional Oscillating water column (OWC) Numerical modeling Volume of fluid (VOF) Pressure drop Turbine |
title_short |
Numerical analysis including pressure drop in oscillating water column device |
title_full |
Numerical analysis including pressure drop in oscillating water column device |
title_fullStr |
Numerical analysis including pressure drop in oscillating water column device |
title_full_unstemmed |
Numerical analysis including pressure drop in oscillating water column device |
title_sort |
Numerical analysis including pressure drop in oscillating water column device |
author |
Gomes, Mateus das Neves |
author_facet |
Gomes, Mateus das Neves Santos, Elizaldo Domingues dos Isoldi, Liércio André Rocha, Luiz Alberto Oliveira |
author_role |
author |
author2 |
Santos, Elizaldo Domingues dos Isoldi, Liércio André Rocha, Luiz Alberto Oliveira |
author2_role |
author author author |
dc.contributor.author.fl_str_mv |
Gomes, Mateus das Neves Santos, Elizaldo Domingues dos Isoldi, Liércio André Rocha, Luiz Alberto Oliveira |
dc.subject.por.fl_str_mv |
Energia das ondas Turbinas Volumes finitos Simulação computacional |
topic |
Energia das ondas Turbinas Volumes finitos Simulação computacional Oscillating water column (OWC) Numerical modeling Volume of fluid (VOF) Pressure drop Turbine |
dc.subject.eng.fl_str_mv |
Oscillating water column (OWC) Numerical modeling Volume of fluid (VOF) Pressure drop Turbine |
description |
The wave energy conversion into electricity has been increasingly studied in the last years. There are several proposed converters. Among them, the oscillatingwater column (OWC) device has been widespread evaluated in literature. In this context, the main goal of this work was to perform a comparison between two kinds of physical constraints in the chimney of the OWC device, aiming to represent numerically the pressure drop imposed by the turbine on the air flow inside the OWC. To do so, the conservation equations of mass,momentumand one equation for the transport of volumetric fraction were solved with the finite volume method (FVM). To tackle thewater-air interaction, the multiphase model volume of fluid (VOF)was used. Initially, an asymmetric constraint inserted in chimney duct was reproduced and investigated. Subsequently, a second strategywas proposed,where a symmetric physical constraint with an elliptical shapewas analyzed. Itwas thus possible to establish a strategy to reproduce the pressure drop in OWC devices caused by the presence of the turbine, as well as to generate its characteristic curve. |
publishDate |
2015 |
dc.date.accessioned.fl_str_mv |
2015-08-20T02:33:04Z |
dc.date.issued.fl_str_mv |
2015 |
dc.type.driver.fl_str_mv |
Estrangeiro info:eu-repo/semantics/article |
dc.type.status.fl_str_mv |
info:eu-repo/semantics/publishedVersion |
format |
article |
status_str |
publishedVersion |
dc.identifier.uri.fl_str_mv |
http://hdl.handle.net/10183/122624 |
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2391-5439 |
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000970267 |
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http://hdl.handle.net/10183/122624 |
dc.language.iso.fl_str_mv |
eng |
language |
eng |
dc.relation.ispartof.pt_BR.fl_str_mv |
Open Engineering [recurso eletrônico]. Warsaw, Poland. Vol. 5, no. 1 (June 2015), p. 229-237 |
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openAccess |
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