Effect of Slip Velocity on the Rotating Electro-Osmotic Flow of the Power-Law Fluid in a Slowly Varying Microchannel.

In this paper, the effect of slip velocity on the rotating electro-osmotic flow (EOF) of the power-law fluid in a non-uniform microchannel under high zeta potential is investigated. The potential distribution of the electric double layer is obtained by using the nonlinear Poisson-Boltzmann equation....

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Publicado en:Zeitschrift für Naturforschung Section A: A Journal of Physical Sciences Vol. 73; no. 9; pp. 825 - 832
Autores principales: Shaowei Wang, Ning Li, Moli Zhao, Azese, Martin N.
Formato: Artículo
Publicado: De Gruyter Sep2018
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        10.1515/zna-2018-0034
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        atl: Effect of Slip Velocity on the Rotating Electro-Osmotic Flow of the Power-Law Fluid in a Slowly Varying Microchannel.
      aug:
        au:
          Shaowei Wang
          Ning Li
          Moli Zhao
          Azese, Martin N.
        affil:
          School of Civil Engineering, Shandong University, Jinan250061, P.R. China
          Engineering, Shandong University, Jinan250061, P.R. China
          Department of Mechanical Engineering, Texas Tech University, Lubbock, TX79409, USA
      su:
        Velocity
        Microchannel flow
        Z bosons
        Newtonian fluids
        Analytical solutions
      sug:
        subj:
          Velocity
          Microchannel flow
          Z bosons
          Newtonian fluids
          Analytical solutions
      keyword:
        Electro-Osmotic Flow
        Numerical Method
        Rotating
        SlipBoundary Condition
        Varying Microchannel
      ab: In this paper, the effect of slip velocity on the rotating electro-osmotic flow (EOF) of the power-law fluid in a non-uniform microchannel under high zeta potential is investigated. The potential distribution of the electric double layer is obtained by using the nonlinear Poisson-Boltzmann equation. By using the finite difference method, the numerical solution of the rotating EOF velocity profile is obtained. The effectiveness and correctness of the present numerical method is proven by comparing the results with the analytical solutions of the Newtonian fluid given by a previous study. The influences of the fluid behavior index n and the slip parameter ß on the velocity profiles are also discussed in detail.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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