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首页> 外文期刊>Scientific reports. >Nonlinear radiation effect on MHD Carreau nanofluid flow over a radially stretching surface with zero mass flux at the surface
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Nonlinear radiation effect on MHD Carreau nanofluid flow over a radially stretching surface with zero mass flux at the surface

机译:非线性辐射对MHD Carreau纳米流体在径向拉伸表面上的流动的影响,该表面的质量通量为零

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摘要

A mathematical model is envisaged to study the axisymmetric steady magnetohydrodynamic (MHD) Carreau nanofluid flow under the influence of nonlinear thermal radiation and chemical reaction past a radially stretched surface. Impact of heat generation/absorption with newly introduced zero mass flux condition of nanoparticles at the sheet is an added feature towards novelty of the problem. Further, for nanofluid the most recently organized model namely Buongiorno’s model is assumed that comprises the effects thermophoresis and Brownian motion. Utilizing suitable self-similar transformations, the set of partial differential equations with high nonlinearity are converted into a dimensionless system of ordinary differential equations. Set of these transmuted equations are numerically solved by MATLAB built-in function bvp4c. Impact of germane parameters on all involved profiles are plotted to examine the heat and mass transfer characteristics. This study reveals that the temperature distribution is an escalating function of the heat generation and nonlinear radiation parameters. Also, it is noted that the incrementing values of chemical reaction parameter lowers the nanoparticles concentration profile. A comparison of the present investigation with already published explorations in limiting case is also added to authenticate the presented results; hence reliable results are being presented.
机译:设想了一个数学模型来研究在经过径向拉伸表面的非线性热辐射和化学反应影响下的轴对称稳态磁流体动力学(MHD)Carreau纳米流体流。片材上新引入的纳米颗粒的零质量通量条件对生热/吸收的影响是该问题新颖性的附加特征。此外,对于纳米流体,假定最近组织的模型(Buongiorno模型)包括热泳和布朗运动效应。利用适当的自相似变换,将具有高非线性度的偏微分方程组转换为常微分方程的无量纲系统。这些trans变方程组通过MATLAB内置函数bvp4c进行数值求解。绘制了锗烷参数对所有相关轮廓的影响,以检查传热和传质特性。这项研究表明,温度分布是热量产生和非线性辐射参数的逐步函数。另外,应注意,化学反应参数的增加值降低了纳米颗粒浓度分布。还添加了本研究与在限制情况下已发布的探索的比较,以验证所提出的结果;因此提出了可靠的结果。

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