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dc.contributor.authorCidade, Maria Teresa*
dc.contributor.authorNóbrega, João Miguel*
dc.date.accessioned2021-02-11T07:48:41Z
dc.date.available2021-02-11T07:48:41Z
dc.date.issued2019*
dc.date.submitted2019-12-09 16:10:12*
dc.identifier42684*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/40270
dc.description.abstractRheology, defined as the science of deformation and flow of matter, is a multidisciplinary scientific field, covering both fundamental and applied approaches. The study of rheology includes both experimental and computational methods, which are not mutually exclusive. Its practical importance embraces many processes, from daily life, like preparing mayonnaise or spread an ointment or shampooing, to industrial processes like polymer processing and oil extraction, among several others. Practical applications include also formulations and product development. This Special Issue aims to present the latest advances in the fields of experimental and computational rheology applied to the most diverse classes of materials (foods, cosmetics, pharmaceuticals, polymers and biopolymers, multiphasic systems and composites) and processes. This Special Issue will comprise, not only original research papers, but also review articles.*
dc.languageEnglish*
dc.subjectT1-995*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issuesen_US
dc.subject.othern/a*
dc.subject.othermicrostructure*
dc.subject.othermicrofluidization*
dc.subject.otheryield stress*
dc.subject.othernonlinear diffusion equation*
dc.subject.otherparticle suspensions*
dc.subject.othercolloids*
dc.subject.otherviscous gravity spreading*
dc.subject.othernanocomposites*
dc.subject.otherBMP model*
dc.subject.otherLCB polypropylene*
dc.subject.otherdiutan gum*
dc.subject.otherthixotropy*
dc.subject.othercomplex fluids*
dc.subject.othertraction test*
dc.subject.otherviscoelasticity*
dc.subject.otherbiopolymer*
dc.subject.othernormal stresses*
dc.subject.otherstart-up shear*
dc.subject.otherOpenFOAM*
dc.subject.otherflow properties*
dc.subject.otherrheometry*
dc.subject.otheroscillatory flows*
dc.subject.otherlinear viscoelasticity*
dc.subject.othercontinuum model*
dc.subject.othersteady-state and transient flow*
dc.subject.otherinterfacial shear rheology*
dc.subject.othershear-banding flow*
dc.subject.otherpressure transducers*
dc.subject.otherjetting*
dc.subject.othernatural hydraulic lime*
dc.subject.othergeneralized Boussinesq equation*
dc.subject.otherprototyping*
dc.subject.otherpiezoelectric*
dc.subject.othermasonry*
dc.subject.otherpolymer processing*
dc.subject.othereco-friendly surfactant*
dc.subject.otheremulsion stability*
dc.subject.otherrhamsan gum*
dc.subject.otherlubricating grease*
dc.subject.othercomputational rheology*
dc.subject.otherSaffman–Taylor instability*
dc.subject.otherextrusion*
dc.subject.othervolume of fluid method*
dc.subject.otherpolymers*
dc.subject.otherweak gel*
dc.subject.othercement pastes*
dc.subject.otherCarbopol*
dc.subject.otherthyme oil*
dc.subject.otherelongational flow*
dc.subject.otherrheology*
dc.subject.othergrout*
dc.subject.otherepoxy*
dc.subject.otherpolystyrene*
dc.subject.othershear thickening*
dc.subject.otherbulk rheology*
dc.subject.otherporous medium equation*
dc.subject.otherconsolidation*
dc.subject.otherDupuit-Forchheimer assumption*
dc.subject.otheryield stress fluid*
dc.subject.otherdrop formation*
dc.subject.otherdilatational rheology*
dc.subject.otherdroplet size distribution (DSD)*
dc.subject.otherNavier-Stokes equations*
dc.titleAdvances in Experimental and Computational Rheology*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-334-4*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039213337*
oapen.relation.isbn9783039213344*
oapen.pages224*
oapen.edition1st*


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