首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Impact of Entropy Generation and Nonlinear Thermal Radiation on Darcy-Forchheimer Flow of MnFe_2O_4-Casson/Water Nanofluid due to a Rotating Disk: Application to Brain Dynamics
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Impact of Entropy Generation and Nonlinear Thermal Radiation on Darcy-Forchheimer Flow of MnFe_2O_4-Casson/Water Nanofluid due to a Rotating Disk: Application to Brain Dynamics

机译:熵产生和非线性热辐射对MnFe_2O_4-Casson /水纳米流体的影响:旋转盘的达辛 - 前水流:应用于脑动力学

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摘要

The present article candidly states the incremental impact of nonlinear thermal radiation on heat transfer enhancement due to Darcy-Forchheimer flow of spinel-type MnFe_2O_4-Casson/water nanofluids due to a stretched rotating disk. In present contest, the entropy generation approach is highlighted specially as a powerful tool for the analysis of the brain function, in accordance with the theological and philosophical approach of Saint Thomas Aquinas. The some of the results of the present study that strengthening of permeability and Casson parameter contribute to the diminution of radial and tangential velocity profiles and yield shrinkage of the related boundary layers. An increase in thermal radiation leading to more heat propagating into the fluid thereby improves the TBL. Fluids with non-Newtonian behavior contribute greater entropy generation rate compared to Newtonian fluids. The most significant outcome is that the entropy generation makes a real contribution to the brain function or analysis of the function of the brain.
机译:本文坦率地说明了由于拉伸旋转盘引起的铜绿型MNFE_2O_4-CASSON /水纳米流体的达西特杂交流动引起的非线性热辐射对热传递增强的增量影响。在目前的比赛中,熵生成方法是特别作为脑功能分析的强大工具,按照圣托马斯阿奎那的神学和哲学方法。本研究的一些结果,即强化渗透性和Casson参数有助于减少径向和切向速度谱和相关边界层的收缩收缩。热辐射的增加导致越来越热传播到流体中,从而改善了TBL。与牛顿流体相比,具有非牛顿行为的液体有助于更大的熵产生速率。最重要的结果是熵生成对大脑功能的实际贡献或对大脑功能的分析。

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