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dc.contributor.authorAmani, Ahmad
dc.contributor.authorBalcázar Arciniega, Néstor
dc.contributor.authorGutiérrez Álvarez, Enrique
dc.contributor.authorOliva Llena, Asensio
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament de Màquines i Motors Tèrmics
dc.date.accessioned2019-05-23T14:39:58Z
dc.date.available2021-09-01T00:32:26Z
dc.date.issued2019-08-15
dc.identifier.citationAmani, A. [et al.]. Numerical study of binary droplets collision in the main collision regimes. "Chemical engineering journal", 15 Agost 2019, vol. 370, p. 477-498.
dc.identifier.issn1385-8947
dc.identifier.urihttp://hdl.handle.net/2117/133392
dc.description.abstractDirect numerical simulation of binary droplets collision is done using a conservative level-set method. The Navier-Stokes and level-set equations are solved using a finite-volume method on collocated grids. A novel lamella stabilization approach is introduced to numerically resolve the thin lamella film appeared during a broad range of collision regimes. This direction-independent method proves to be numerically efficient and accurate compared with experimental data. When the droplets collide, the fluid between them is pushed outward, leaving a thin gas layer bounded by the surface of two droplets. This layer progressively gets thinner and depending on the collision regime, may rupture resulting in coalescence of the droplets or may linger resulting in bouncing-off the droplets. Embedded ghost-nodes layer makes it possible to mimic both bouncing and coalescence phenomena of the droplets collision. The numerical tools introduced are validated and verified against different experimental results for a wide range of collision regimes. A very good agreement is observed between the results of this paper and experimental data available in the literature. A detailed study of the energy budget for different shares of kinetic and dissipation energies inside of the droplet and matrix, in addition to the surface tension energy for studied cases, is provided. Supplementary quantitative values of viscous dissipation rate inside of the matrix and droplet, and also the radial expansion of the droplet are presented as well.
dc.format.extent22 p.
dc.language.isoeng
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Spain
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Enginyeria mecànica::Mecànica de fluids
dc.subject.lcshComputational fluid dynamics
dc.subject.otherComprehensive droplets collision regimes
dc.subject.otherConservative level-set
dc.subject.otherLamella stabilization
dc.subject.otherEnergy analysis
dc.titleNumerical study of binary droplets collision in the main collision regimes
dc.typeArticle
dc.subject.lemacDinàmica de fluids -- Simulació numérica
dc.contributor.groupUniversitat Politècnica de Catalunya. CTTC - Centre Tecnològic de la Transferència de Calor
dc.identifier.doi10.1016/j.cej.2019.03.188
dc.description.peerreviewedPeer Reviewed
dc.relation.publisherversionhttps://www.sciencedirect.com/science/article/pii/S1385894719306631
dc.rights.accessOpen Access
local.identifier.drac24243160
dc.description.versionPostprint (published version)
local.citation.authorAmani, A.; Balcázar, N.; Gutierrez, E.; Oliva, A.
local.citation.publicationNameChemical engineering journal
local.citation.volume370
local.citation.startingPage477
local.citation.endingPage498


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