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Description
  • Using Hill?s variational principles, the lower and upper bounds on a sphere drag coefficient were estimated in dependence on the ratio of zero and infinite shear rate viscosities for a Carreau model fluid. The results obtained were compared with experimental data for the fall of spherical particles through the polymer solutions obeying the Carreau viscosity model.
  • Using Hill?s variational principles, the lower and upper bounds on a sphere drag coefficient were estimated in dependence on the ratio of zero and infinite shear rate viscosities for a Carreau model fluid. The results obtained were compared with experimental data for the fall of spherical particles through the polymer solutions obeying the Carreau viscosity model. (en)
  • Aplikací Hillových variačních principů byly určeny horní a dolní mez korekční funkce součinitele odporu kulové částice pro pád v Carreauově kapalině v závislosti na hodnotě poměru dolní a horní limitní viskozity. Získané výsledky byly porovnány s experimentálními údaji pádu kulových částic roztoky polymerů, jejichž viskozitní funkce se řídí Carreauovým tokovým modelem. (cs)
Title
  • Fall of Spherical Particles through a Carreau Fluid
  • Pád kulových částic v Carreauově kapalině (cs)
  • Fall of Spherical Particles through a Carreau Fluid (en)
skos:prefLabel
  • Fall of Spherical Particles through a Carreau Fluid
  • Pád kulových částic v Carreauově kapalině (cs)
  • Fall of Spherical Particles through a Carreau Fluid (en)
skos:notation
  • RIV/00216275:25310/04:00001871!RIV08-GA0-25310___
http://linked.open.../vavai/riv/strany
  • 034/1-034/11
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  • P(GA104/03/0544)
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  • 564123
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  • RIV/00216275:25310/04:00001871
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  • fall of spherical particles; Carreau fluid; drag coefficient (en)
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  • [3D01E88B280E]
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  • Bratislava, Slovensko
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  • Proceedings of 31st International Conference of Slovak Society of Chemical Engineering
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  • Bendová, Helena
  • Machač, Ivan
  • Šiška, Bedřich
  • Doleček, Petr
number of pages
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  • Slovak Society of Chemical Engineering
https://schema.org/isbn
  • 80-227-2052-6
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  • 25310
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