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dc.contributor.authorBucciarelli E.
dc.contributor.authorFormánek R.
dc.contributor.authorKysela B.
dc.contributor.authorFořt I.
dc.contributor.authorŠulc R.
dc.date.accessioned2019-07-01T09:10:21Z
dc.date.available2019-07-01T09:10:21Z
dc.date.issued2019
dc.identifierV3S-331974
dc.identifier.citationBUCCIARELLI, E., et al. Dispersion kinetics in mechanically agitated vessel. In: EFM18 – Experimental Fluid Mechanics 2018. Experimental Fluid Mechanics 2018, Praha, 2018-11-13/2018-11-16. Les Ulis Cedex A: EDP Sciences, 2019. EPJ Web of Conferences. vol. 213. ISSN 2100-014X. DOI 10.1051/epjconf/201921302008. Available from: https://epjwoc.epj.org/articles/epjconf/abs/2019/18/epjconf_efm18_02008/epjconf_efm18_02008.html
dc.identifier.issn2100-014X (online)
dc.identifier.urihttp://hdl.handle.net/10467/84446
dc.description.abstractAgitation of two immiscible liquids or solid-liquid suspension is a frequent operation in chemical and metallurgical industries. Prediction of mean drop/particle size and drop/particle size distribution (DSD) is vital for emulsification, suspension polymerization, solid particle dispersion or crystallization. Simulation of particulate systems requires the knowledge of DSD and its time evolution. The time evolution of drop size distribution was investigated in baffled vessel mechanically agitated by a Rushton turbine and high a shear tooth impeller. The system water –silicone oil was used as a model liquid. The volume fraction of the dispersed phase was 0.05 %. The drop sizes were determined by image analysis. The time evolution of the drops size d32 was studied for both impellers tested. The model used involves the first order kinetics. Finally, the following correlations predicted by the Kolmogorov-Hinze theory were evaluated at steady state: dp32/D = C1.We-0.6 and dpmax/D = C2.We-0.6, where We is the impeller Weber number.eng
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherEDP Sciences
dc.relation.ispartofEFM18 – Experimental Fluid Mechanics 2018
dc.relation.urihttps://epjwoc.epj.org/articles/epjconf/abs/2019/18/epjconf_efm18_02008/epjconf_efm18_02008.html
dc.subjectmixingeng
dc.subjectliquid-liquid mixingeng
dc.titleDispersion kinetics in mechanically agitated vesseleng
dc.typestať ve sborníkucze
dc.typeconference papereng
dc.identifier.doi10.1051/epjconf/201921302008
dc.relation.projectidinfo:eu-repo/grantAgreement/Czech Science Foundation/GA/GA16-20175S/CZ/Lokální rychlost disipace turbulentní energie v dispersních systémech/
dc.rights.accessclosedAccess
dc.identifier.wos000504642200009
dc.type.statusPeer-reviewed
dc.type.versionpublishedVersion
dc.relation.conferenceExperimental Fluid Mechanics 2018


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