Matches in SemOpenAlex for { <https://semopenalex.org/work/W2079784633> ?p ?o ?g. }
- W2079784633 endingPage "2273" @default.
- W2079784633 startingPage "2261" @default.
- W2079784633 abstract "In this study the air–water two-phase flow in a tapered channel of a PEMFC was numerically simulated using the volume of fluid (VOF) method. In particular, a 3D mathematical model of the fuel cell flow channel was used to obtain a reliable evaluation of the fuel cell performance for different taper angles and different temperatures and to calculate the total amount of water produced. This information was then used as boundary conditions to simulate the two-phase flow in the cell channel through a 2D VOF model. Typical operating conditions were assigned and the numerical mesh was constructed to represent the real fuel cell configuration. The results show that tapering the channel downstream enhances the water removal due to increased airflow velocity. In the rectangular channel no film formation is noted with a marked predominance of slug flow. In contrast, as the taper angle is increased the predominant two-phase flow pattern is film flow. Finally many contact angles have been used to simulate the effect of the hydrophobicity of a GDL surface on the motion of the water. As the hydrophobicity of a GDL surface is decreased the presence of film is more evident even for less tapered channels." @default.
- W2079784633 created "2016-06-24" @default.
- W2079784633 creator A5027439578 @default.
- W2079784633 creator A5055079954 @default.
- W2079784633 creator A5060852092 @default.
- W2079784633 date "2014-02-01" @default.
- W2079784633 modified "2023-10-03" @default.
- W2079784633 title "Numerical study of two-phase flow patterns in the gas channel of PEM fuel cells with tapered flow field design" @default.
- W2079784633 cites W1963500915 @default.
- W2079784633 cites W1970050331 @default.
- W2079784633 cites W1972252122 @default.
- W2079784633 cites W1979953998 @default.
- W2079784633 cites W1981725099 @default.
- W2079784633 cites W1983223658 @default.
- W2079784633 cites W1983727916 @default.
- W2079784633 cites W1991224712 @default.
- W2079784633 cites W1997831464 @default.
- W2079784633 cites W2000155431 @default.
- W2079784633 cites W2008609115 @default.
- W2079784633 cites W2018982456 @default.
- W2079784633 cites W2021749494 @default.
- W2079784633 cites W2023248330 @default.
- W2079784633 cites W2034073822 @default.
- W2079784633 cites W2034142852 @default.
- W2079784633 cites W2034882779 @default.
- W2079784633 cites W2036145748 @default.
- W2079784633 cites W2036154062 @default.
- W2079784633 cites W2038019500 @default.
- W2079784633 cites W2042999848 @default.
- W2079784633 cites W2048054600 @default.
- W2079784633 cites W2050847418 @default.
- W2079784633 cites W2050890012 @default.
- W2079784633 cites W2053577244 @default.
- W2079784633 cites W2054541381 @default.
- W2079784633 cites W2056196492 @default.
- W2079784633 cites W2066864978 @default.
- W2079784633 cites W2071405590 @default.
- W2079784633 cites W2082159776 @default.
- W2079784633 cites W2088088663 @default.
- W2079784633 cites W2088349865 @default.
- W2079784633 cites W2092584591 @default.
- W2079784633 cites W2093307164 @default.
- W2079784633 cites W2102231751 @default.
- W2079784633 cites W2110789424 @default.
- W2079784633 cites W2115665623 @default.
- W2079784633 cites W2132388103 @default.
- W2079784633 cites W2138817539 @default.
- W2079784633 cites W2143935810 @default.
- W2079784633 cites W2161253782 @default.
- W2079784633 cites W2166047055 @default.
- W2079784633 doi "https://doi.org/10.1016/j.ijhydene.2013.11.106" @default.
- W2079784633 hasPublicationYear "2014" @default.
- W2079784633 type Work @default.
- W2079784633 sameAs 2079784633 @default.
- W2079784633 citedByCount "78" @default.
- W2079784633 countsByYear W20797846332014 @default.
- W2079784633 countsByYear W20797846332015 @default.
- W2079784633 countsByYear W20797846332016 @default.
- W2079784633 countsByYear W20797846332017 @default.
- W2079784633 countsByYear W20797846332018 @default.
- W2079784633 countsByYear W20797846332019 @default.
- W2079784633 countsByYear W20797846332020 @default.
- W2079784633 countsByYear W20797846332021 @default.
- W2079784633 countsByYear W20797846332022 @default.
- W2079784633 countsByYear W20797846332023 @default.
- W2079784633 crossrefType "journal-article" @default.
- W2079784633 hasAuthorship W2079784633A5027439578 @default.
- W2079784633 hasAuthorship W2079784633A5055079954 @default.
- W2079784633 hasAuthorship W2079784633A5060852092 @default.
- W2079784633 hasConcept C114138010 @default.
- W2079784633 hasConcept C116067010 @default.
- W2079784633 hasConcept C119599485 @default.
- W2079784633 hasConcept C121332964 @default.
- W2079784633 hasConcept C121684516 @default.
- W2079784633 hasConcept C127162648 @default.
- W2079784633 hasConcept C127210992 @default.
- W2079784633 hasConcept C127413603 @default.
- W2079784633 hasConcept C132319479 @default.
- W2079784633 hasConcept C134514944 @default.
- W2079784633 hasConcept C139514615 @default.
- W2079784633 hasConcept C144308804 @default.
- W2079784633 hasConcept C159985019 @default.
- W2079784633 hasConcept C1633027 @default.
- W2079784633 hasConcept C192562407 @default.
- W2079784633 hasConcept C2987658370 @default.
- W2079784633 hasConcept C38349280 @default.
- W2079784633 hasConcept C41008148 @default.
- W2079784633 hasConcept C42360764 @default.
- W2079784633 hasConcept C44154836 @default.
- W2079784633 hasConcept C57879066 @default.
- W2079784633 hasConcept C6556556 @default.
- W2079784633 hasConcept C78519656 @default.
- W2079784633 hasConceptScore W2079784633C114138010 @default.
- W2079784633 hasConceptScore W2079784633C116067010 @default.
- W2079784633 hasConceptScore W2079784633C119599485 @default.
- W2079784633 hasConceptScore W2079784633C121332964 @default.
- W2079784633 hasConceptScore W2079784633C121684516 @default.
- W2079784633 hasConceptScore W2079784633C127162648 @default.