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MHD Three-Dimensional Boundary Layer Flow of Casson Nanofluid Past a Linearly Stretching Sheet With Convective Boundary Condition

机译:卡森纳米流体的MHD三维边界层流过对流边界条件的线性拉伸片

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Steady flow of a Casson fluid in the presence of a nanoparticle is studied. It is considered that the sheet is stretched in both the direction along the xy-plane. Moreover, we have considered the magnetohydrodynamics effect within the fluid and convective condition along the surface. Similarity transformation is used to convert the governing partial differential equations to a set of coupled nonlinear ordinary differential equations which are solved numerically. The behavior of emerging parameters are presented graphically and discussed for velocity, temperature, and nanoparticles fraction. Variation of the reduced Nusselt and Sherwood number against physical parameters are presented graphically. It is found that the reduced Nusselt number is the decreasing function and the reduced Sherwood number is the increasing function of Brownian parameter Nb and thermophoresis parameter Nt.
机译:研究了在纳米粒子存在下卡森流体的稳定流动。认为片材在沿xy平面的两个方向上都被拉伸。此外,我们已经考虑了流体在流体和沿表面对流条件下的磁流体动力学效应。使用相似变换将控制性偏微分方程转换为一组数值求解的耦合非线性常微分方程。图形显示了新兴参数的行为,并讨论了速度,温度和纳米粒子分数。减少的Nusselt和Sherwood数相对于物理参数的变化以图形方式显示。发现减少的努塞尔特数是布朗函数参数Nb和热泳参数Nt的减少函数,减少的舍伍德数是增加的函数。

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