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  • Alternating current electrosmosis (ACE) represents the flow of a liquid electrolyte resulting from Coulombic force in the electric double layer (EDL) near to the electrolyte-metallic electrode surface. In standard arrangement of electroosmotic micropump the array of planar microelectrodes is placed on the one side (e.g. bottom) of the microchannel. Several principles were described in the literature. Traveling wave electroosmosis is based on the phase shift of AC voltage between the electrodes (three or more phases). Nonsymmetric interdigitated (bipolar one phase) arrangement of the planar or three dimensional electrodes is based on the complex charging and discharging of the electric double layers on the electrodes with different sizes and gaps between them. In this paper we suggested new top-bottom zig-zag arrangement. The arrays of electrodes are placed both on the top and on the bottom of the microchannel. Experimental realization of such system is simpler than one side arrangement. Results of mat
  • Alternating current electrosmosis (ACE) represents the flow of a liquid electrolyte resulting from Coulombic force in the electric double layer (EDL) near to the electrolyte-metallic electrode surface. In standard arrangement of electroosmotic micropump the array of planar microelectrodes is placed on the one side (e.g. bottom) of the microchannel. Several principles were described in the literature. Traveling wave electroosmosis is based on the phase shift of AC voltage between the electrodes (three or more phases). Nonsymmetric interdigitated (bipolar one phase) arrangement of the planar or three dimensional electrodes is based on the complex charging and discharging of the electric double layers on the electrodes with different sizes and gaps between them. In this paper we suggested new top-bottom zig-zag arrangement. The arrays of electrodes are placed both on the top and on the bottom of the microchannel. Experimental realization of such system is simpler than one side arrangement. Results of mat (en)
Title
  • Mathematical modeling of top-bottom zig-zag four phase AC electroosmotic micropump
  • Mathematical modeling of top-bottom zig-zag four phase AC electroosmotic micropump (en)
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  • Mathematical modeling of top-bottom zig-zag four phase AC electroosmotic micropump
  • Mathematical modeling of top-bottom zig-zag four phase AC electroosmotic micropump (en)
skos:notation
  • RIV/60461373:22340/09:00021868!RIV10-MSM-22340___
http://linked.open...avai/riv/aktivita
http://linked.open...avai/riv/aktivity
  • P(GD104/08/H055), P(IAA401280904), Z(MSM6046137306)
http://linked.open...vai/riv/dodaniDat
http://linked.open...aciTvurceVysledku
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  • 324936
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  • RIV/60461373:22340/09:00021868
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  • AC electroosmosis; travelling wave; micropump; mathematical modeling (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...ontrolniKodProRIV
  • [B46237E62554]
http://linked.open...v/mistoKonaniAkce
  • Tatranské Matliare
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  • Bratislava
http://linked.open...i/riv/nazevZdroje
  • Proceedings of 36th International Conference of Slovak Society of Chemical Engineering
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http://linked.open...UplatneniVysledku
http://linked.open...iv/tvurceVysledku
  • Šnita, Dalimil
  • Přibyl, Michal
  • Červenka, Petr
  • Hrdlička, Jiří
http://linked.open...vavai/riv/typAkce
http://linked.open.../riv/zahajeniAkce
http://linked.open...n/vavai/riv/zamer
number of pages
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  • Slovenská technická univerzita v Bratislave
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  • 978-80-227-3072-3
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  • 22340
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