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A numerical treatment of MHD radiative flow of Micropolar nanofluid with homogeneous-heterogeneous reactions past a nonlinear stretched surface

机译:具有极性非均质反应的均相-非均相反应的微极性纳米流体MHD辐射流的数值处理

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摘要

The impact of nonlinear thermal radiation in the flow of micropolar nanofluid past a nonlinear vertically stretching surface is investigated. The electrically conducting fluid is under the influence of magnetohydrodynamics, heat generation/absorption and mixed convection in the presence of convective boundary condition. The system of differential equations is solved numerically using the bvp4c function of MATLAB. To authenticate our results, two comparisons with already studied problems are also conducted and an excellent concurrence is found; hence reliable results are being presented. Complete deliberation for magnetite nanofluid with Ferric Oxide (Fe3O4) nanoparticles in the water-based micropolar nanofluid is also given to depict some stimulating phenomena. The effect of assorted parameters on velocity, homogeneous-heterogeneous reactions, temperature and micropolar velocity profiles are discussed and examined graphically. Moreover, graphical illustrations for the Nusselt number and Skin friction are given for sundry flow parameters. It is examined that temperature distribution and its associated boundary layer thickness increase for mounting values of the magnetic parameter. Additionally, it is detected that the Nusselt number decays when we increase the values of the Biot number.
机译:研究了非线性热辐射对微极性纳米流体通过非线性垂直拉伸表面的流动的影响。在存在对流边界条件的情况下,导电流体受到磁流体动力学,热量产生/吸收和混合对流的影响。使用MATLAB的bvp4c函数以数值方式求解微分方程组。为了验证我们的结果,还对已经研究的问题进行了两次比较,并得出了很好的共识。因此提出了可靠的结果。还给出了在水基微极性纳米流体中用三氧化二铁(Fe3O4)纳米颗粒对磁铁矿纳米流体进行的全面研究,以描述一些刺激现象。讨论并以图形方式检查了各种参数对速度,均相-非均相反应,温度和微极速度曲线的影响。此外,还给出了杂散流量参数的Nusselt数和皮肤摩擦力的图形说明。对于磁性参数的安装值,检查了温度分布及其相关的边界层厚度增加。另外,当我们增加比奥数的值时,检测到努塞尔数会衰减。

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