Calculation of terminal falling velocity of spherical particles moving through polymer solutions using a Power-law viscosity model

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dc.contributor.author Machač, Ivan
dc.contributor.author Šiška, Bedřich
dc.date.accessioned 2019-10-03T07:32:38Z
dc.date.available 2019-10-03T07:32:38Z
dc.date.issued 2019
dc.identifier.isbn 978-80-7560-243-5
dc.identifier.issn 1211-5541
dc.identifier.uri https://hdl.handle.net/10195/74260
dc.description.abstract The paper deals with the determination of the terminal velocity of solid spherical particles falling slowly in unbounded purely viscous shear-thinning polymer solutions. The relationships are given for calculation of a sphere terminal velocity falling in the creeping flow region using a power-law viscosity model. The comparison is presented for terminal velocities calculated according to the aforementioned relationships with those obtained experimentally by measuring the terminal velocity of spheres in the aqueous solutions of polymers. By considering the shape of the viscosity function of the polymer solutions, it was necessary to use a simple iterative method to estimate the suitable interval of shear rates for determination of the power-law model parameters. en
dc.format p. 117 - 126
dc.language.iso en
dc.publisher University of Pardubice en
dc.relation.ispartof Scientific papers of the University of Pardubice. Series A, Faculty of Chemical Technology. 25/2019 en
dc.rights open access en
dc.subject sphere free fall en
dc.subject non-Newtonian fluids en
dc.subject creeping flow en
dc.subject power-law model en
dc.title Calculation of terminal falling velocity of spherical particles moving through polymer solutions using a Power-law viscosity model en
dc.type Article en
dc.peerreviewed yes en
dc.publicationstatus published en
dc.identifier.obd 39884084


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