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On the effects of chemical reaction on controlled heat and mass transfer in magnetized non-Newtonian biofluid through a long rectangular tunnel

机译:通过长矩形隧洞将化学反应对控制热和传质磁化非牛流体生物流体中的影响的影响

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A comprehensive analysis of heat transfer and chemical reaction of flow driven by the complex peristaltic wave in non-uniform long tunnel is presented in this article. Wall properties and the effects of chemical reaction in MHD flow are also observed in the current study. The flow problem is modeled using the law of conservations for mass, momentum, heat and chemical reaction. The nonlinear problem is simplified via long-wavelength/creeping flow assumptions and certain transformations. The resulting coupled linear partial differential equations are evaluated using the eigenfunction expansion approach; analytic solution is obtained. Simultaneous effects of all the physical parameters are discussed through graphs. Trapping phenomenon is also presented by drawing streamlines. In addition, a comparative analysis of fluid with Newtonian properties is performed with non-Newtonian ones. It is observed that the flow tends to reduce in non-Newtonian fluid than in Newtonian fluids.
机译:本文对非均匀长隧道内复杂蠕动波驱动流动的传热和化学反应进行了综合分析。在本研究中还观察到了壁特性和MHD流动中化学反应的影响。利用质量、动量、热量和化学反应守恒定律对流动问题进行建模。非线性问题通过长波/蠕变流假设和某些变换得到简化。利用本征函数展开法计算得到的耦合线性偏微分方程;得到了解析解。通过图表讨论了所有物理参数的同时影响。陷阱现象也通过绘制流线表现出来。此外,还对具有牛顿性质的流体与非牛顿性质的流体进行了对比分析。观察到,与牛顿流体相比,非牛顿流体中的流动倾向于减少。

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