Numerical study on the rotating electro-osmotic flow of third grade fluid with slip boundary condition.

Considering the slip boundary condition, the rotating electro-osmotic flow of a third grade fluid in a channel formed by two parallel plates is investigated in the present study. The charge distribution is treated with the Debye–Hückel approximation analytically. Based on the finite difference metho...

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Publicado en:Zeitschrift für Naturforschung Section A: A Journal of Physical Sciences Vol. 75; no. 7; pp. 649 - 656
Autores principales: Song, Juan, Wang, Shaowei, Zhao, Moli, Li, Ning
Formato: Artículo
Publicado: De Gruyter Jul2020
Acceso en línea:Ver este registro en EBSCOhost
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        10.1515/zna-2020-0013
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        atl: Numerical study on the rotating electro-osmotic flow of third grade fluid with slip boundary condition.
      aug:
        au:
          Song, Juan
          Wang, Shaowei
          Zhao, Moli
          Li, Ning
        affil: School of Civil Engineering, Shandong University, Jinan, 250061, P R China
      sug:
      keyword:
        electro-osmotic flow
        numerical study
        slip boundary condition
        third grade fluid
      ab: Considering the slip boundary condition, the rotating electro-osmotic flow of a third grade fluid in a channel formed by two parallel plates is investigated in the present study. The charge distribution is treated with the Debye–Hückel approximation analytically. Based on the finite difference method, the velocity profile for rotating electro-osmotic flow of third grade fluid is obtained numerically. It is shown that the non-Newtonian parameter of third grade fluid and the velocity slip factor play the important roles for the rotating electro-osmotic flow. The increasing non-Newtonian parameter slows down the flow and decreases the velocity magnitude, and the increasing slip parameter β has the similar influence on the velocity profile. Furthermore, the effect of the inclusion of third grade on the velocity profile is more conspicuous in the area near the walls.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: German
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