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Non-orthogonal stagnation point flow of Maxwell nano-material over a stretching cylinder

机译:麦克风纳米材料在拉伸圆筒上的非正交停滞点流动

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Oblique stagnation point flow of incompressible Maxwell nanofluid past a stretching cylinder with active and passive controlled nanoparticles concentration condition is discussed numerically. The suitable coordinate decomposition reduce the governing boundary layer equations into the system of nonlinear ordinary differential equations which are approximated by Keller box procedure for several values of pertinent parameters. The Numerical results are compared and validated with existing ones as particular cases and found to be an excellent agreement. Velocity profile and lines of flow are sketched to discuss the Obliqueness of the flow. The temperature and concentration profiles drawn to illustrate the influence of involved parameters also variations in local Nusselt and Sherwood numbers are presented through tabular data. It is observed that the behavior of tangential velocity for the viscoelastic fluid and concentration of nanoparticles against thermophoresis diffusion over the cylinder are quite opposite when compared with the results over flat sheet. The temperature distribution and concentration of nanoparticles decreases with elasticity of the fluid.
机译:不可压缩麦克斯韦尔纳米流体的倾斜停滞点流量通过具有主动和被动控制的纳米颗粒浓度条件的拉伸圆筒进行了数值。合适的坐标分解将控制边界层方程减少到由Keller Box程序近似的非线性常微分方程系统中,用于近几个相关参数值。将数值结果进行比较并与特定情况的现有结果验证,并被发现是一个很好的协议。速写速度曲线和流动线以讨论流动的倾斜度。绘制涉及参数的影响的温度和浓度分布也通过表格数据呈现了局部NUSELET和SHERWOOD号的变化。观察到,与平板上的结果相比,粘弹性流体对粘弹性流体的切向速度和纳米颗粒的浓度与圆柱体的浓度相反。纳米颗粒的温度分布和浓度随流体弹性而降低。

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