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MHD Natural Convection Flow of Casson Nanofluid over Nonlinearly Stretching Sheet Through Porous Medium with Chemical Reaction and Thermal Radiation

机译:化学反应和热辐射作用下卡森纳米流体在非线性拉伸板上通过多孔介质的MHD自然对流

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摘要

In the present work, the effects of chemical reaction on hydromagnetic natural convection flow of Casson nanofluid induced due to nonlinearly stretching sheet immersed in a porous medium under the influence of thermal radiation and convective boundary condition are performed numerically. Moreover, the effects of velocity slip at stretching sheet wall are also examined in this study. The highly nonlinear-coupled governing equations are converted to nonlinear ordinary differential equations via similarity transformations. The transformed governing equations are then solved numerically using the Keller box method and graphical results for velocity, temperature, and nanoparticle concentration as well as wall shear stress, heat, and mass transfer rate are achieved through MATLAB software. Numerical results for the wall shear stress and heat transfer rate are presented in tabular form and compared with previously published work. Comparison reveals that the results are in good agreement. Findings of this work demonstrate that Casson fluids are better to control the temperature and nanoparticle concentration as compared to Newtonian fluid when the sheet is stretched in a nonlinear way. Also, the presence of suspended nanoparticles effectively promotes the heat transfer mechanism in the base fluid.
机译:在目前的工作中,在热辐射和对流边界条件的影响下,对化学反应对卡森纳米流体的水磁自然对流的影响进行了模拟,该流体是由于非线性拉伸片浸没在多孔介质中而引起的。此外,在这项研究中还研究了速度滑移对拉伸板壁的影响。高度耦合的控制方程通过相似变换转换为非线性常微分方程。然后,使用凯勒盒方法对变换后的控制方程进行数值求解,并通过MATLAB软件获得速度,温度和纳米颗粒浓度以及壁切应力,热量和传质速率的图形结果。表格形式显示了壁面剪应力和传热速率的数值结果,并与先前发表的工作进行了比较。比较表明,结果吻合良好。这项工作的发现表明,当片材以非线性方式拉伸时,与牛顿流体相比,卡森流体能够更好地控制温度和纳米粒子的浓度。而且,悬浮的纳米颗粒的存在有效地促进了基础流体中的传热机理。

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