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Computational and Experimental Investigation of Interfacial Area in Near-Field Diesel Spray Simulation

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Computational and Experimental Investigation of Interfacial Area in Near-Field Diesel Spray Simulation

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dc.contributor.author Pandal, A. es_ES
dc.contributor.author Pastor Enguídanos, José Manuel es_ES
dc.contributor.author Payri, Raul es_ES
dc.contributor.author Kastengren, Alan es_ES
dc.contributor.author Duke, Daniel J. es_ES
dc.contributor.author Matusik, Katarzyna E es_ES
dc.contributor.author GIRALDO-VALDERRAMA, JHOAN SEBASTIAN es_ES
dc.contributor.author Powell, Christopher F. es_ES
dc.contributor.author Schmidt, D. es_ES
dc.date.accessioned 2018-06-15T04:21:26Z
dc.date.available 2018-06-15T04:21:26Z
dc.date.issued 2017 es_ES
dc.identifier.issn 1946-3952 es_ES
dc.identifier.uri http://hdl.handle.net/10251/104123
dc.description.abstract [EN] The dense spray region in the near-field of diesel fuel injection remains an enigma. This region is difficult to interrogate with light in the visible range and difficult to model due to the rapid interaction between liquid and gas. In particular, modeling strategies that rely on Lagrangian particle tracking of droplets have struggled in this area. To better represent the strong interaction between phases, Eulerian modeling has proven particularly useful. Models built on the concept of surface area density are advantageous where primary and secondary atomization have not yet produced droplets, but rather form more complicated liquid structures. Surface area density, a more general concept than Lagrangian droplets, naturally represents liquid structures, no matter how complex. These surface area density models, however, have not been directly experimentally validated in the past due to the inability of optical methods to elucidate such a quantity. Optical diagnostics traditionally measure near-spherical droplet size far downstream, where the spray is optically thin. Using ultra-small-angle x-ray scattering (USAXS) measurements to measure the surface area and x-ray radiography to measure the density, we have been able to test one of the more speculative parts of Eulerian spray modeling. The modeling and experimental results have been combined to provide insight into near-field spray dynamics. es_ES
dc.description.sponsorship Authors acknowledge that part of this work was partially funded by the Spanish Ministry of Economy and Competitiveness in the frame of the COMEFF (TRA2014-59483-R) project.
dc.language Inglés es_ES
dc.publisher SAE International es_ES
dc.relation.ispartof SAE International Journal of Fuel and Lubricants es_ES
dc.rights Reserva de todos los derechos es_ES
dc.subject.classification MAQUINAS Y MOTORES TERMICOS es_ES
dc.title Computational and Experimental Investigation of Interfacial Area in Near-Field Diesel Spray Simulation es_ES
dc.type Artículo es_ES
dc.identifier.doi 10.4271/2017-01-0859 es_ES
dc.relation.projectID info:eu-repo/grantAgreement/MINECO//TRA2014-59483-R/ES/MODELOS AVANZADOS DE COMBUSTION EN SPRAYS PARA PLANTAS PROPULSIVAS EFICIENTES/ es_ES
dc.rights.accessRights Abierto es_ES
dc.contributor.affiliation Universitat Politècnica de València. Departamento de Máquinas y Motores Térmicos - Departament de Màquines i Motors Tèrmics es_ES
dc.description.bibliographicCitation Pandal, A.; Pastor Enguídanos, JM.; Payri, R.; Kastengren, A.; Duke, DJ.; Matusik, KE.; Giraldo-Valderrama, JS.... (2017). Computational and Experimental Investigation of Interfacial Area in Near-Field Diesel Spray Simulation. SAE International Journal of Fuel and Lubricants. 10(2):1-9. doi:10.4271/2017-01-0859 es_ES
dc.description.accrualMethod S es_ES
dc.relation.publisherversion http://doi.org/10.4271/2017-01-0859 es_ES
dc.description.upvformatpinicio 1 es_ES
dc.description.upvformatpfin 9 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 10 es_ES
dc.description.issue 2 es_ES
dc.relation.pasarela S\334882 es_ES
dc.contributor.funder Ministerio de Economía, Industria y Competitividad es_ES


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