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MHD Convective Flow of Jeffrey Fluid Due to a Curved Stretching Surface with Homogeneous-Heterogeneous Reactions

机译:由于具有均质-非均相反应的弯曲拉伸表面Jeffrey流体的MHD对流

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摘要

This paper looks at the flow of Jeffrey fluid due to a curved stretching sheet. Effect of homogeneous-heterogeneous reactions is considered. An electrically conducting fluid in the presence of applied magnetic field is considered. Convective boundary conditions model the heat transfer analysis. Transformation method reduces the governing nonlinear partial differential equations into the ordinary differential equations. Convergence of the obtained series solutions is explicitly discussed. Characteristics of sundry parameters on the velocity, temperature and concentration profiles are analyzed by plotting graphs. Computations for pressure, skin friction coefficient and surface heat transfer rate are presented and examined. It is noted that fluid velocity and temperature through curvature parameter are enhanced. Increasing values of Biot number correspond to the enhancement in temperature and Nusselt number.
机译:本文研究了由于弯曲的拉伸片引起的杰弗里流体的流动。考虑均相-非均相反应的影响。考虑在存在磁场的情况下的导电流体。对流边界条件为传热分析建模。变换方法将控制非线性偏微分方程简化为常微分方程。明确讨论了所得级数解的收敛性。通过绘制曲线图分析各种参数在速度,温度和浓度曲线上的特征。提出并检验了压力,皮肤摩擦系数和表面传热速率的计算。注意,通过曲率参数提高了流体速度和温度。比奥数的增加值对应于温度和努塞尔数的增加。

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