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Comparative study of Eyring and Carreau fluids in a suspension of dust and nickel nanoparticles with variable conductivity

机译:具有可变电导率的灰尘和镍纳米粒子悬浮液中的眼镜和鲁德流体的比较研究

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摘要

A theoretical analysis is carried out to investigate the magnetohydrodynamic unsteady flow of Eyring-Powell and Carreau non-Newtonian fluids in a suspension of dust and nickel nanoparticles by considering variable thermal conductivity and thermal radiation. Dispersion of nickel nanoparticles in dusty fluids finds applications in heat exchanger systems, rechargeable batteries, chemical catalysts, metallurgy, conducting paints, magnetic recording media, drug delivery, nanofibers, textiles, etc. The initially arising set of physical governing partial differential equations is transformed to ordinary differential equations (ODEs) with the aid of similarity transformations. Consequentially, the nonlinear ODEs are solved numerically through the Runge-Kutta Fehlberg scheme (RKFS). The computational results for non-dimensional temperature and velocity profiles are presented through graphs. Furthermore, the numerical values of friction factor and heat transfer rate are tabulated numerically for the unsteady and steady cases of the Eyring and Carreau fluid cases and of the dusty non-Newtonian (phi = 0) and the dusty non-Newtonian nanofluid (phi not equal 0) cases of the unsteady flow. We also validated the present results with previous published studies and found them to be highly satisfactory. The formulated model reveals that the rate of heat transfer is higher in the mixture of the nickel + Eyring-Powell case compared to the nickel + Carreau case. From this we can highlight that, depending on the industrial appliances, we can use heating or cooling processes for Eyring and Carreau fluids, respectively.
机译:通过考虑可变导热率和热辐射来研究理论分析,以研究眼新的鲍威尔和奥克伦非牛顿流体在灰尘和镍纳米粒子的悬浮液中的磁力动力学不稳定流。镍纳米粒子在尘埃流体中的分散在热交换器系统中发现应用,可充电电池,化学催化剂,冶金,导电涂料,磁记录介质,药物递送,纳米纤维,纺织品等。最初出现的一组物理控制局部微分方程进行了变化借助相似性转换对普通微分方程(ODES)。因此,非线性杂物在数量上通过径g-Kutta fehlberg方案(RKF)来解决。通过图表呈现非维度温度和速度轮廓的计算结果。此外,摩擦因子和传热速率的数值是为了数字上针对未定常和稳定的嘴唇和奥克伦流体案例以及尘土飞扬的非牛顿(PHI = 0)和尘埃非牛顿纳米流体(PHI等于0)不稳定流动的情况。我们还通过以前发表的研究验证了目前的结果,并发现它们非常令人满意。配方模型表明,与镍+奥克伦盒相比,镍+眼新鲍尔壳的混合物中传热率较高。从这一点,我们可以突出,根据工业设备,我们可以分别使用加热或冷却过程,用于注销和携带乐器流体。

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  • 来源
    《European Physical Journal Plus》 |2018年第4期|共15页
  • 作者单位

    Garden City Coll Sci &

    Management Studies Dept Math 16th KM Old Madras Rd Bangalore 560049 Karnataka India;

    Univ BDT Coll Engn Dept Math Davangere 577004 Karnataka India;

    GITAM Univ Dept Math Bangalore 562163 Karnataka 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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