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MHD and Cross Diffusion Effects on Peristaltic Flow of a Casson Nanofluid in a Duct

机译:MHD和交叉扩散效应导管中鲫鱼植入钙质流动的交叉漫射效应

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The Soret and Dufour effects on the peristaltic transport of a conducting Casson nanofluid in a flexible channel are studied. The influence of dissipation and Joule heating are also discussed. The governing equations are simplified by using a long wave length and small Reynolds number approximations. The analytical solutions for stream function and axial velocity are obtained. Moreover, the Runge-Kutte-based shooting method is utilized to solve the coupled energy and concentration equations. The impact of important parameters on the flow is explained using graphs for both Newtonian and Casson fluid cases. It is observed that the Casson fluid has more velocity than the Newtonian fluid in the middle of the channel and the situation is reversed at the channel walls. Further, a higher temperature is noted for Casson fluid than for Newtonian fluid throughout the channel, whereas concentration shows the opposite behavior.
机译:研究了对柔性通道中导电Casson纳米流体的蠕动输送的珊瑚礁和Dufour效应。还讨论了耗散和焦耳加热的影响。通过使用长波长和小雷诺数近似来简化控制方程。获得用于流功能和轴向速度的分析解。此外,利用基于跑速的拍摄方法来解决耦合能量和浓度方程。使用牛顿和鲫鱼流体壳的图表解释了重要参数对流程的影响。观察到,鲫鱼流体具有比沟道中间中间的牛顿流体更多的速度,并且在通道墙壁上逆转情况。此外,对于糖粉流体而不是整个通道的牛顿流体,较高的温度较高,而浓度显示相反的行为。

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