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Entropy Generation Analysis of Peristaltic Flow and Heat Transfer of a Jeffery Nanofluid in a Horizontal Channel under Magnetic Environment

机译:磁环境下水平通道中Jeffery纳米流体蠕动流动的熵生成分析

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摘要

A mathematical model is developed to examine the behaviors of a peristalsis flow with nanoparticles in a symmetric channel under the magnetic environment. Here, the nanofluid is electrically conducted through an external magnetic field. Thermal radiation and Joule heating effects are also retained in the present analysis. Under the lubrication approach, the reduced nonlinear systems are obtained. Then, they are solved very efficiently by means of a homotopy analysis method-based package BVPh 2.0. The influences of important physical parameters on the flow behaviors are presented. Analysis of the entropy generation is illustrated. It is found that the Brownian diffusion and the thermophoresis are the two most important nanoparticle slip mechanisms in the Jeffery fluids as well. Besides, the Hartman number, the type of the Jeffery fluid, the Brinkman number, and the thermal radiation parameter play important roles on flow behaviors. Results show that the temperature profile enhanced but the nanoparticles’ volume fraction profiles lowered with increase in the Hartman number. However, using the Jeffery nanofluid induces effect on the velocity distribution that decreases with the increase in the Jeffery fluid parameter. It is also found that the generated total entropy increases with an increase in the Brownian motion parameter but with a decrease in the thermophoresis parameter.
机译:开发了数学模型,以检查磁环境下对称通道中的纳米颗粒的植入流动的行为。这里,纳米流体通过外部磁场电导。在本分析中也保留了热辐射和焦耳加热效果。在润滑方法下,获得了减少的非线性系统。然后,通过统一分析方法的包装BVPH 2.0非常有效地解决了它们。提出了重要物理参数对流量的影响。说明了对熵产生的分析。结果发现,棕色扩散和耐热度也是杰弗烃中最重要的纳米粒子滑移机构。此外,Hartman号码,Jeffery流体的类型,Brinkman号码和热辐射参数在流动行为上起重要作用。结果表明,温度曲线增强,但纳米颗粒的体积分数分布随着Hartman号的增加而降低。然而,使用Jeffery Nanofluid引起对随着Jeffery流体参数的增加而降低的速度分布的影响。还发现,产生的总熵随着褐色运动参数的增加而增加,但是热度参数减少。

著录项

  • 作者

    Aneela Bibi; Hang Xu;

  • 作者单位
  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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