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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Heat and Mass Transfer in Stagnation Point Flow of Maxwell Nanofluid Towards a Vertical Stretching Sheet with Effect of Induced Magnetic Field
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Heat and Mass Transfer in Stagnation Point Flow of Maxwell Nanofluid Towards a Vertical Stretching Sheet with Effect of Induced Magnetic Field

机译:麦克风纳米流体朝向垂直拉伸板的滞销点流动的热量和传质

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This paper presents a mathematical model analysis of heat and mass transfer in a two-dimensional flow of electrically conducting, thermally radiative, and chemically reactive Maxwell nanofluid towards a vertical stretching and permeable sheet embedded in a porous medium. Boundary layer approximation and suitable transformations are used to reduce the governing differential equations convenient for computation. Eventually, the transformed nonlinear differential equations along with the corresponding boundary conditions are solved in the framework of optimal homotopy analysis method. The effects of induced magnetic field, buoyancy force, viscous dissipation, heat source, Joule heating, and convective boundary condition are analyzed in detail. The rates of heat, mass, and momentum transfer with respect to the relevant parameters are also examined in terms of the local Nusselt number, Sherwood number, and skin friction coefficients, respectively. Among the many results of the study, it is shown that the induced magnetic field, flow velocity, and temperature profiles are increasing functions of the Maxwell parameter. The results of the present study are also in a close agreement with previously published results under common assumptions.
机译:本文介绍了在嵌入多孔介质的垂直拉伸和可渗透板的导电,热辐射和化学反应性麦克风纳米流体的二维流动和质量传递的数学模型分析。边界层近似和合适的变换用于减少适合计算的控制微分方程。最终,在最佳同型分析方法的框架中解决了变换的非线性微分方程以及相应的边界条件。详细分析了诱导磁场,浮力,粘性耗散,热源,焦耳加热和对流边界条件的影响。还在当地露营数量,夏尔伍德数和皮肤摩擦系数方面检查了关于相关参数的热量,质量和动量转移。在研究的许多结果中,示出了诱导的磁场,流速和温度分布正在增加MaxWell参数的函数。本研究的结果也与以前公布的常见假设的出版结果密切相关。

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