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首页> 外文期刊>European Physical Journal Plus >Impact of Cattaneo-Christov heat flux on electroosmotic transport of third-order fluids in a magnetic environment
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Impact of Cattaneo-Christov heat flux on electroosmotic transport of third-order fluids in a magnetic environment

机译:Cattaneo-Christov热通量对磁环境中三阶流体电渗运输的影响

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摘要

In the case of steady flow of a fluid under the combined influence of external electric and magnetic fields, the fluid moves forward by forming an axial momentum boundary layer. With this end in view a study has been performed here to investigate the problem of entropy generation during electroosmotically modulated flow of a third-order electrically conducting fluid flowing on a microchannel bounded by silicon-made parallel plates under the influence of a magnetic field, by paying due consideration to the steric effect. The associated mechanism of heat transfer has also been duly taken care of, by considering Cattaneo-Christov heat flux. A suitable finite difference scheme has been developed for the numerical procedure. A detailed study of the velocity and temperature distributions has been made by considering their variations with respect to different physical parameters involved in the problem. The results of numerical computation have been displayed graphically. The computational work has been carried out by considering blood as the working fluid, with the motivation of exploring some interesting phenomena in the context of hemodynamical flow in micro-vessels. Among other variables, parametric variations of the important physical variables, viz. i) skin friction and ii) Nusselt number have been investigated. The study confirms that the random motion of the fluid particles can be controlled by a suitable adjustment of the intensity of an externally applied magnetic field in the transverse direction. It is further revealed that the Nusselt number diminishes, as the Prandtl number gradually increases; however, a steady increase in the Nusselt number occurs with increase in thermal relaxation. Entropy generation is also found to be enhanced with increase in Joule heating. The results of the present study have also been validated in a proper manner.
机译:在外部电场的组合影响下流体稳定流动的情况下,通过形成轴向动量边界层,流体向前移动。在此目的,这里已经进行了研究,以研究在通过磁场的影响下通过硅制成的平行板流动的微旋转导电流体的电胶电导流体的熵产生的问题。支付适当考虑的空间效果。通过考虑Cattaneo-Christov热量通量,也已经适当地进行了传热的相关机制。已经为数值程序开发了合适​​的有限差分方案。通过考虑其关于问题所涉及的不同物理参数的变化,通过了对速度和温度分布的详细研究。数值计算的结果已经以图形方式显示。通过考虑血液作为工作流体来进行计算工作,其在微容器中血液动力流动的背景下探索一些有趣现象的动机。在其他变量中,重要的物理变量的参数变化,viz。 i)皮肤摩擦和II)已经研究了营养数。该研究证实,流体颗粒的随机运动可以通过在横向方向上的外部施加磁场的强度的适当调节来控制。进一步透露,当普朗特数逐渐增加时,营养数减少;然而,在热松弛增加的增加时,营养数量的稳定增加。还发现熵产生随着焦耳加热的增加而增强。本研究的结果也以适当的方式验证。

著录项

  • 来源
    《European Physical Journal Plus 》 |2018年第5期| 共18页
  • 作者单位

    Indian Inst Engn Sci &

    Technol Ctr Healthcare Sci &

    Technol Sibpur 711103 Howrah India;

    Indian Inst Engn Sci &

    Technol Ctr Healthcare Sci &

    Technol Sibpur 711103 Howrah India;

    Yogoda Satsanga Palpara Mahavidyalaya Dept Math Purba Medinipur 721457 India;

    Indian Inst Engn Sci &

    Technol Ctr Healthcare Sci &

    Technol Sibpur 711103 Howrah India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学 ;
  • 关键词

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