Title
Marangoni-driven pattern formation in an absorbing binary mixtureAuthor
xmlui.dri2xhtml.METS-1.0.item-contributorOtherinstitution
https://ror.org/03qryx823https://ror.org/01cc3fy72
Version
http://purl.org/coar/version/c_ab4af688f83e57aa
Rights
Closed AccessAccess
http://purl.org/coar/access_right/c_abf2Published at
Physics of Fluids Vol 36. N. 10. N. art. 102128. November, 2024Publisher
American Institute of PhysicsKeywords
ODS 7 Energía asequible y no contaminanteODS 9 Industria, innovación e infraestructura
ODS 13 Acción por el clima
Abstract
We investigate the evolution of convective instability in a LiBr-water binary mixture, driven by thermal and solutal Marangoni stresses, through numerical simulations. A small perturbation in absorpti ... [+]
We investigate the evolution of convective instability in a LiBr-water binary mixture, driven by thermal and solutal Marangoni stresses, through numerical simulations. A small perturbation in absorption at the surface disturbs the equilibrium, generating surface tension gradients that drive Marangoni flows. To isolate and better understand the interplay between the Marangoni effect and absorption, we extended the previous study by investigating the LiBr-water binary system in the absence of gravity. For the first time, we observed the formation of a stable rim in an absorbing binary mixture, which underwent a slight contraction followed by rapid Marangoni spreading. This behavior shows similarities with the flow patterns seen in the “coffee-ring” and Marangoni spreading phenomena in evaporating binary mixtures. On the subsurface, convective motion breaks into several vortices, accompanied by the formation of plumes with reduced mass fraction. As the system evolves, the symmetry of the flow pattern around the cell center breaks down. The absence of buoyancy-driven forces eliminates a key counterforce to Marangoni flows, transforming the previously ordered patterns into non-periodic oscillations, followed by the development of non-stationary but regular patterns. These results complement our earlier findings [P. F. Arroiabe et al., Phys. Fluids 36, 022119 (2024)] where gravitational forces obscured these phenomena. [-]
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Gobierno VascoGobierno Vasco
Gobierno Español
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Elkartek 2023Ikertalde Convocatoria 2022-2025
Programa Estatal para Impulsar la Investigación Científico-Técnica y su Transferencia, del Plan Estatal de Investigación Científica, Técnica y de Innovación 2021-2023. Proyectos de generación de conocimiento 2021
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KK-2023-00041IT1505-22
PID2021-124232OB-I00
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Sin informaciónSin información
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xmlui.dri2xhtml.METS-1.0.item-oaire-awardTitle
Materiales magnetoactivos avanzados para nuevos sistemas inteligentes (MMASINT)Mecánica de fluidos
Mecanismos de Transporte en la mejora de la absorción debido a los aditivos (TREATED)
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