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具有阿累尼乌斯活化能和感应磁场的纤毛调节磁流体动力学三元混合杰弗里纳米流体的熵产生优化

Entropy generation optimization of cilia regulated MHD ternary hybrid Jeffery nanofluid with Arrhenius activation energy and induced magnetic field.

作者信息

Mishra Nidhish K, Sharma Bhupendra K, Sharma Parikshit, Muhammad Taseer, Pérez Laura M

机构信息

Department of Basic Sciences, College of Sciences and Theoretical Studies, Saudi Electronic University, 11673, Riyadh, Saudi Arabia.

Department of Mathematics, Birla Institute of Technology and Science, Pilani Campus, Pilani, Rajasthan, 333031, India.

出版信息

Sci Rep. 2023 Sep 2;13(1):14483. doi: 10.1038/s41598-023-41299-8.

Abstract

This study deals with the entropy generation analysis of synthetic cilia using a ternary hybrid nanofluid (Al-Cu-Fe2O3/Blood) flow through an inclined channel. The objective of the current study is to investigate the effects of entropy generation optimization, heat, and mass transfer on ternary hybrid nanofluid passing through an inclined channel in the proximity of the induced magnetic field. The novelty of the current study is present in studying the combined effect of viscous dissipation, thermophoresis, Brownian motion, exponential heat sink/source, porous medium, endothermic-exothermic chemical reactions, and activation energy in the proximity of induced magnetic field is examined. The governing partial differential equations (PDEs) are transformed into the ordinary differential equations (ODEs) using appropriate transformations. Applying the low Reynolds number and the long-wavelength approximation, resultant ODEs are numerically solved using shooting technique via BVP5C in MATLAB. The velocity, temperature, concentration, and induced magnetism profiles are visually discussed and graphically analyzed for various fluid flow parameters. Graphical analysis of physical interest quantities like mass transfer rate, heat transfer rate, entropy generation optimization, and skin friction coefficient are also graphically discussed. The entropy generation improves for enhancing values of Reynolds number, solutal Grashof number, heat sink/source parameter, Brinkman number, magnetic Prandtl number, and endothermic-exothermic reaction parameter while the reverse effect is noticed for chemical reaction and induced magnetic field parameter. The findings of this study can be applied to enhance heat transfer efficiency in biomedical devices, optimizing cooling systems, designing efficient energy conversion processes, and spanning from renewable energy technologies to aerospace propulsion systems.

摘要

本研究涉及使用三元混合纳米流体(Al-Cu-Fe₂O₃/血液)流经倾斜通道的合成纤毛的熵产生分析。本研究的目的是研究熵产生优化、传热和传质对在感应磁场附近流经倾斜通道的三元混合纳米流体的影响。本研究的新颖之处在于研究了粘性耗散、热泳、布朗运动、指数型热沉/热源、多孔介质、吸热-放热化学反应以及感应磁场附近的活化能的综合影响。使用适当的变换将控制偏微分方程(PDEs)转化为常微分方程(ODEs)。应用低雷诺数和长波长近似,通过MATLAB中的BVP5C使用打靶技术对所得的ODEs进行数值求解。针对各种流体流动参数,直观地讨论并以图形方式分析了速度、温度、浓度和感应磁性分布。还以图形方式讨论了诸如传质速率、传热速率、熵产生优化和表面摩擦系数等物理感兴趣量的图形分析。对于雷诺数、溶质格拉晓夫数、热沉/热源参数、布林克曼数、磁普朗特数和吸热-放热反应参数的增大值,熵产生得到改善,而对于化学反应和感应磁场参数则观察到相反的效果。本研究的结果可应用于提高生物医学设备中的传热效率、优化冷却系统、设计高效的能量转换过程,以及从可再生能源技术到航空航天推进系统等领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e49d/10475137/cb3b87bbcf18/41598_2023_41299_Fig9_HTML.jpg

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