首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal and velocity slip effects on Casson nanofluid flow over an inclined permeable stretching cylinder via collocation method
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Thermal and velocity slip effects on Casson nanofluid flow over an inclined permeable stretching cylinder via collocation method

机译:热和速度滑移对通过配置方法在倾斜渗透性拉伸圆柱体上的Casson纳米流体流动的影响

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The main emphasis of present work is to investigate the velocity and thermal slip effects on Casson nanofluid with heat and mass transfer phenomena over an inclined permeable stretching cylinder. The cylinder is subject to transverse magnetic field. Buongiorno’s model is adapted to study the Brownian motion and thermphoresis effects which play a dominant role in nanofluid. Governing set of equations are derived in terms of partial differential equations for Casson nanofluid model, consisting continuity, momentum, energy and concentration equation which are transformed into set of coupled nonlinear ordinary differential equations using similarity transformation. The numerical solution is obtained using collocation method. The literature survey shows that the present problem has not been studied before. Physical quantities of interest are nanofluid velocity, temperature, concentration, skin friction coefficient, Nusselt number and Sherwood number which are analyzed through graphs against the emerging physical parameters. It is found thatNbandNtplay a dominant role within the thermal and concentration boundary layer regions. In the same manner, suction parameter and both velocity and thermal slip parameters depicts the dynamic effects in the entire domain of stretching surface of the cylinder.
机译:当前工作的主要重点是研究在倾斜的可渗透拉伸圆柱体上具有传热和传质现象的卡森纳米流体的速度和热滑移效应。圆柱体受到横向磁场的影响。 Buongiorno的模型适用于研究在纳米流体中起主要作用的布朗运动和热泳效应。根据Casson纳米流体模型的偏微分方程推导了主导的方程组,该方程由连续性,动量,能量和浓度方程组成,并使用相似变换将其转换为耦合的非线性常微分方程组。数值解是通过搭配法获得的。文献调查表明,目前尚未研究过这个问题。感兴趣的物理量是纳米流体的速度,温度,浓度,皮肤摩擦系数,努塞尔数和舍伍德数,它们通过针对新兴物理参数的图表进行分析。发现NbandNt在热和浓度边界层区域内起着主导作用。以相同的方式,吸力参数以及速度和热滑差参数都描述了气缸拉伸表面整个区域的动态效果。

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