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首页> 外文期刊>Discrete and continuous dynamical systems >UNSTEADY MHD SLIP FLOW OF NON NEWTONIAN POWER-LAW NANOFLUID OVER A MOVING SURFACE WITH TEMPERATURE DEPENDENT THERMAL CONDUCTIVITY
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UNSTEADY MHD SLIP FLOW OF NON NEWTONIAN POWER-LAW NANOFLUID OVER A MOVING SURFACE WITH TEMPERATURE DEPENDENT THERMAL CONDUCTIVITY

机译:温度依赖于导热率的运动表面上非牛顿幂律纳米流体的非定常MHD滑动

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摘要

In this paper, unsteady magnetohydrodynamic (MHD) boundary layer slip flow and heat transfer of power-law nanofluid over a nonlinear porous stretching sheet is investigated numerically. The thermal conductivity of the nanofluid is assumed as a function of temperature and the partial slip conditions are employed at the boundary. The nonlinear coupled system of partial differential equations governing the flow and heat transfer of a power law nanofluid is first transformed into a system of nonlinear coupled ordinary differential equations by applying a suitable similarity transformation. The resulting system is then solved numerically using shooting technique. Numerical results are presented in the form of graphs and tables and the effect of the power-law index, velocity and thermal slip parameters, nanofluid volume concentration parameter, applied magnetic field parameter, suction/injection parameter on the velocity and temperature profiles are examined from physical point of view. The boundary layer thickness decreases with increase in strength of applied magnetic field, nanoparticle volume concentration, velocity slip and the unsteadiness of the stretching surface. Whereas thermal boundary layer thickness increase with increasing values of magnetic parameter, nanoparticle volume concentration and velocity slip at the boundary.
机译:本文通过数值研究了非定常磁流体动力学边界层滑移和幂律纳米流体在非线性多孔拉伸片材上的传热。假定纳米流体的热导率是温度的函数,并且在边界处采用了部分滑移条件。首先,通过应用适当的相似变换,将控制幂律纳米流体的流动和热传递的偏微分方程非线性耦合系统转换为非线性耦合常微分方程系统。然后使用射击技术对所得系统进行数值求解。数值结果以图表和表格的形式给出,并考察了幂律指数,速度和热滑移参数,纳米流体体积浓度参数,施加的磁场参数,吸/射参数对速度和温度分布的影响物理角度。边界层厚度随着施加的磁场强度,纳米颗粒体积浓度,速度滑移和拉伸表面的不稳定性的增加而减小。而热边界层的厚度随着磁参数值的增加而增加,纳米颗粒的体积浓度和边界处的速度滑移。

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