中南大学学报(英文版)2023,Vol.30Issue(4) :1217-1230.

广义混合流体中纤毛通过电渗透区的流动模拟

Generalized complex cilia tip modeled flow through an electroosmotic region

S.IJAZ M.ABDULLAH H.SADAF S.NADEEM
中南大学学报(英文版)2023,Vol.30Issue(4) :1217-1230.

广义混合流体中纤毛通过电渗透区的流动模拟

Generalized complex cilia tip modeled flow through an electroosmotic region

S.IJAZ 1M.ABDULLAH 1H.SADAF 2S.NADEEM3
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作者信息

  • 1. Department of Mathematics,Faculty of Sciences,Rawalpindi Women University,Rawalpindi 44000,Pakistan
  • 2. Department of Basic Science and Humanities,College of Electrical&Mechanical Engineering,National University of Sciences and Technology,Islamabad 46000,Pakistan
  • 3. Department of Mathematics,Faculty of Sciences,Quaid-e-Azam University,Islamabad 46000,Pakistan
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摘要

本文建立了一个广义纳米流体流动模型,研究磁流体中纤毛毯在通过电渗透通道时对其运输的作用,并对混合纳米流体的特性进行解释.通过假设长波长和低雷诺数估计,将流体的流动分析方程转换为无量纲形式;用数学解法得到速度分布、压力梯度和流函数的解析解;用图表表明相关物理参数的影响.该模型具有重要的应用价值,可应用于生物运输过程、人工纤毛设计和其他机械装置的操作等领域.

Abstract

In this analysis,we explore a nanofluid model that represents the role of ciliary carpets in the transport of magnetohydrodynamic fluid in an electroosmotic channel.Hybrid nanofluid features are also taken into interpretation.The equations leading the flow analysis are converted into non-dimensional form by supposing long wavelength and low Reynolds number approximations.Analytical solutions for velocity distribution,pressure gradient and stream function are acquired and solved by a mathematic solver.The effects of the relevant physical parameters are graphically noted.The consequence of the present model has remarkable applications,which can be used in various areas of biological transport processes,artificial cilia design and in the operation of other mechanical devices.

关键词

电渗透效应/纤毛边界/辐射影响/混合纳米流体现象

Key words

electroosmosis consequence/ciliated boundaries/radiation impact/hybrid nanofluid phenomena

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出版年

2023
中南大学学报(英文版)
中南大学

中南大学学报(英文版)

CSTPCDCSCD北大核心EI
影响因子:0.47
ISSN:2095-2899
参考文献量41
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