Matches in SemOpenAlex for { <https://semopenalex.org/work/W2952713061> ?p ?o ?g. }
- W2952713061 endingPage "672" @default.
- W2952713061 startingPage "656" @default.
- W2952713061 abstract "In this study, two-phase flow in a Polymer Electrolyte Membrane (PEM) fuel cell with the converging-diverging flow field was investigated using numerical simulation. A transient, three-dimensional, two-phase flow, and multi-component model, as well as an agglomerate model for oxygen reduction in the cathode catalyst layer, was employed to simulate the performance of the cathode half-cell. The numerical implementation was conducted by developing a new solver in OpenFOAM by the author. An augmentation about 28.2% was observed in the oxygen mass fraction at GDL/Channel interface for a PEM fuel cell with a converging-diverging angle of 0.3° in comparison with the reference cell (straight channels). Moreover, the average of liquid water saturation was decreased by 3.61% in the middle cross-section of gas channels and 9.4% near to the outlet region for reviewed converging-diverging cases. Finally, to investigate the improvement of the cell performance, polarization curve and net output power were presented. It was found that the using converging-diverging flow field was more effective at high current densities, while it had a minor effect at low current densities. The net output power of the PEM fuel cell with converging-diverging channels was enhanced by more than 10% compared with the base cell." @default.
- W2952713061 created "2019-06-27" @default.
- W2952713061 creator A5006296208 @default.
- W2952713061 date "2019-09-01" @default.
- W2952713061 modified "2023-10-03" @default.
- W2952713061 title "A numerical investigation of the performance of Polymer Electrolyte Membrane fuel cell with the converging-diverging flow field using two-phase flow modeling" @default.
- W2952713061 cites W1771593714 @default.
- W2952713061 cites W1963499102 @default.
- W2952713061 cites W1966529292 @default.
- W2952713061 cites W1971860042 @default.
- W2952713061 cites W1976169509 @default.
- W2952713061 cites W1980799937 @default.
- W2952713061 cites W1991615022 @default.
- W2952713061 cites W1996278183 @default.
- W2952713061 cites W1996336413 @default.
- W2952713061 cites W2005513306 @default.
- W2952713061 cites W2010792352 @default.
- W2952713061 cites W2015348103 @default.
- W2952713061 cites W2021613555 @default.
- W2952713061 cites W2031480843 @default.
- W2952713061 cites W2037733696 @default.
- W2952713061 cites W2052771008 @default.
- W2952713061 cites W2056481313 @default.
- W2952713061 cites W2065654819 @default.
- W2952713061 cites W2065797180 @default.
- W2952713061 cites W2074209558 @default.
- W2952713061 cites W2095958264 @default.
- W2952713061 cites W2108192995 @default.
- W2952713061 cites W2117841326 @default.
- W2952713061 cites W2170451452 @default.
- W2952713061 cites W2202375645 @default.
- W2952713061 cites W2220297855 @default.
- W2952713061 cites W2228550755 @default.
- W2952713061 cites W2278871723 @default.
- W2952713061 cites W2285956428 @default.
- W2952713061 cites W2334125263 @default.
- W2952713061 cites W2341820138 @default.
- W2952713061 cites W2424855770 @default.
- W2952713061 cites W2548561203 @default.
- W2952713061 cites W2556187298 @default.
- W2952713061 cites W2578884589 @default.
- W2952713061 cites W2617124332 @default.
- W2952713061 cites W2626279566 @default.
- W2952713061 cites W2754563276 @default.
- W2952713061 cites W2763830552 @default.
- W2952713061 cites W2789342695 @default.
- W2952713061 cites W2797491496 @default.
- W2952713061 cites W2800355146 @default.
- W2952713061 cites W2803952090 @default.
- W2952713061 cites W2883961046 @default.
- W2952713061 cites W2894695147 @default.
- W2952713061 cites W2904567091 @default.
- W2952713061 cites W4237005386 @default.
- W2952713061 cites W4362064729 @default.
- W2952713061 doi "https://doi.org/10.1016/j.energy.2019.06.089" @default.
- W2952713061 hasPublicationYear "2019" @default.
- W2952713061 type Work @default.
- W2952713061 sameAs 2952713061 @default.
- W2952713061 citedByCount "16" @default.
- W2952713061 countsByYear W29527130612019 @default.
- W2952713061 countsByYear W29527130612020 @default.
- W2952713061 countsByYear W29527130612021 @default.
- W2952713061 countsByYear W29527130612022 @default.
- W2952713061 countsByYear W29527130612023 @default.
- W2952713061 crossrefType "journal-article" @default.
- W2952713061 hasAuthorship W2952713061A5006296208 @default.
- W2952713061 hasConcept C113196181 @default.
- W2952713061 hasConcept C119599485 @default.
- W2952713061 hasConcept C121332964 @default.
- W2952713061 hasConcept C127413603 @default.
- W2952713061 hasConcept C132319479 @default.
- W2952713061 hasConcept C144308804 @default.
- W2952713061 hasConcept C147789679 @default.
- W2952713061 hasConcept C148043351 @default.
- W2952713061 hasConcept C17525397 @default.
- W2952713061 hasConcept C185592680 @default.
- W2952713061 hasConcept C192562407 @default.
- W2952713061 hasConcept C205049153 @default.
- W2952713061 hasConcept C2987658370 @default.
- W2952713061 hasConcept C38115104 @default.
- W2952713061 hasConcept C38349280 @default.
- W2952713061 hasConcept C41625074 @default.
- W2952713061 hasConcept C42360764 @default.
- W2952713061 hasConcept C43617362 @default.
- W2952713061 hasConcept C49110097 @default.
- W2952713061 hasConcept C55493867 @default.
- W2952713061 hasConcept C57879066 @default.
- W2952713061 hasConcept C68801617 @default.
- W2952713061 hasConceptScore W2952713061C113196181 @default.
- W2952713061 hasConceptScore W2952713061C119599485 @default.
- W2952713061 hasConceptScore W2952713061C121332964 @default.
- W2952713061 hasConceptScore W2952713061C127413603 @default.
- W2952713061 hasConceptScore W2952713061C132319479 @default.
- W2952713061 hasConceptScore W2952713061C144308804 @default.
- W2952713061 hasConceptScore W2952713061C147789679 @default.
- W2952713061 hasConceptScore W2952713061C148043351 @default.
- W2952713061 hasConceptScore W2952713061C17525397 @default.
- W2952713061 hasConceptScore W2952713061C185592680 @default.