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首页> 外文期刊>Military operations research >Impact of nonlinear radiative nanoparticles on an unsteady flow of a Williamson fluid toward a permeable convectively heated shrinking sheet
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Impact of nonlinear radiative nanoparticles on an unsteady flow of a Williamson fluid toward a permeable convectively heated shrinking sheet

机译:非线性辐射纳米粒子对Williamson流体向可渗透对流加热收缩片材非稳态流动的影响

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摘要

Purpose - The study aims to numerically examine the impact of nanoparticles on an unsteady flow of a Williamson fluid past a permeable convectively heated shrinking sheet. Design/methodology/approach - In sort of the solution of the governing differential equations, suitable transformation variables are used to get the system of ODEs. The converted equations are then numerically solved via the shooting technique. Findings - The impacts of such parameters on the velocity profile, temperature distribution and the concentration of nanoparticles are examined through graphs and tables. The results point out that multiple solutions are achieved for certain values of the suction parameter and for decelerating flow, while for accelerating flow, the solution is unique. Further, the non-Newtonian parameter reduces the fluid velocity and boosts the temperature distribution and concentration of nanoparticles in the first solution, while the reverse drift is noticed in the second solution. Practical implications - The current results may be used in many applications such as biomedicine, industrial, electronics and solar energy. Originality/value - The authors think that the current results are new and significant, which are used in many applications such as biomedicine, industrial, electronics and solar energy. The results have not been considered elsewhere.
机译:目的-该研究旨在通过数值研究纳米颗粒对流过可渗透对流加热收缩片材的Williamson流体非恒定流动的影响。设计/方法/方法-在控制微分方程的解决方案中,适当的变换变量用于获得ODE的系统。然后通过射击技术对转换后的方程进行数值求解。结果-通过图形和表格检查了这些参数对速度分布,温度分布和纳米颗粒浓度的影响。结果指出,对于一定的吸力参数值和减速流量,可以实现多种解决方案,而对于加速流量,解决方案是唯一的。此外,非牛顿参数降低了流体速度,并提高了第一溶液中纳米颗粒的温度分布和浓度,而在第二溶液中则出现了反向漂移。实际意义-当前结果可用于许多应用,例如生物医学,工业,电子和太阳能。原创性/价值-作者认为当前的结果是新颖且有意义的,可用于许多应用,例如生物医学,工业,电子和太阳能。结果没有在其他地方考虑。

著录项

  • 来源
    《Military operations research》 |2018年第6期|731-742|共12页
  • 作者单位

    Department of Mathematical Sciences, Federal Urdu University of Arts Sciences and Technology, Karachi, Pakistan;

    Department of Electrical Engineering, Bahria University Islamabad, Islamabad, Pakistan;

    Mechanical Engineering Department, Prince Mohammad Bin Fahd University, AI-Khobar, Saudi Arabia and RAK Research and Innovation Center, American University of Ras AI Khaimah, Ras al-Khaimah, United Arab Emirates;

    Department of Civil Engineering, School of Engineering, University of Birmingham, Birmingham, UK;

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

    Nanofluid; Unsteady flow; Convective boundary condition; Nonlinear radiation; Williamson fluid;

    机译:纳米流体流量不稳定对流边界条件;非线性辐射;威廉姆森流体;

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