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Transport and heat transfer of time dependent MHD slip flow of nanofluids in solar collectors with variable thermal conductivity and thermal radiation

机译:具有可变热导率和热辐射的太阳能集热器中与时间相关的MHD滑流的MHD滑流的传输和传热

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In this paper, the unsteady magnetohydrodynamic (MHD) boundary layer slip flow and heat transfer of nanofluid in a solar collector, modeled mathematically as a nonlinear stretching sheet is investigated numerically. The variable thermal conductivity is assumed as a function of temperature and the wall-slip conditions are utilized at the boundary. The similarity transformation technique is used to reduce the governing boundary value problem to a system of nonlinear ordinary differential equations (ODEs) and then solved numerically. The numerical values obtained for the velocity and temperature depend on nanofluid volume concentration parameter, unsteadiness parameter, suction/injection parameter, thermal conductivity parameter, slip parameters, MHD parameter and thermal radiation parameter. The effects of various parameters on the flow and heat transfer characteristics are presented and discussed through graphs and tables.
机译:本文研究了一个非定常的磁流体动力学(MHD)边界层滑流和纳米流体在太阳能收集器中的传热,并对其进行了数学建模,并将其建模为非线性拉伸片。可变的热导率被假定为温度的函数,并且在边界处利用壁滑条件。相似变换技术用于将控制边界值问题简化为非线性常微分方程(ODE)系统,然后进行数值求解。获得的速度和温度的数值取决于纳米流体体积浓度参数,不稳定参数,吸/射参数,导热系数,滑移参数,MHD参数和热辐射参数。通过图形和表格介绍和讨论了各种参数对流动和传热特性的影响。

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