磁化多孔表面上卡森铁磁流体的热辐射和热扩散:RSM分析

Q1 Chemical Engineering
S. Manjunatha , J. Santhosh Kumar , Khalil Ur Rehman , Wasfi Shatanawi , S.V.K. Varma
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引用次数: 0

摘要

各种各样的传热应用都使用铁磁流体。这些行业包括热交换器、材料研究和许多其他行业,如食品加工、太阳能槽式集热器和航空航天工程。本研究的主要目标是研究流体如何通过卡森铁磁流体双线性拉伸表面拉伸的多孔介质,并考虑滑移和磁场的影响。本研究考虑了热辐射、热源/热源、一级化学反应、Soret效应和Dufour效应等因素。相似变换将流动模型的非线性耦合偏微分方程转化为常耦合微分方程。在MATLAB中利用节省时间的bvp4c方法结合拍摄技术,得到了结果,并以图形和表格的形式给出。并计算了拉伸表面的表面摩擦、努塞尔数和舍伍德数等导出量。分析和讨论了各种参数对流动导出量的影响。动量边界层随着卡森参数的增大而减小。随着磁参量的增大,流体速度下降,流体温度则相反。随着辐射和热源的增加,温度升高,而杜福效应导致相反的结果。调整后的表面摩擦r平方和r平方达到99.92%的值。与杜福效应相比,努塞尔数受热源和热辐射参数的影响更大。一些重要贡献包括讨论了响应面方法,研究了卡森流体、孔隙度和拉伸比参数之间的复杂联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal radiation and thermo-diffusion in Casson-ferrofluid over a magnetized porous surface: RSM analysis
A wide variety of heat transfer applications employ ferrofluids. These include heat exchangers, materials research, and a host of other industries, such as food processing, solar trough collectors, and aerospace engineering. The main goal of this study is to investigate how fluid moves through a porous medium stretched across a Casson ferrofluid bilinear stretching surface, accounting for the effects of slip and magnetic fields. This study takes into account factors such as thermal radiation, heat source/sink, first-order chemical reactions, Soret, and Dufour effects. Similarity transformations convert the flow model's governing nonlinear coupled partial differential equations into ordinary coupled differential equations. The results are obtained using the time-saving bvp4c approach in MATLAB along with the shooting technique and presented in graphs and tables. The derived quantities, namely skin friction, Nusselt number, and Sherwood number at the stretching surface, are also computed. The effects of various parameters on flow-derived quantities have been analyzed and discussed. The momentum boundary layer drops as the Casson parameter rises. As the magnetic parameter raises, the fluid velocity drops, while the fluid temperature exhibits the opposite phenomenon. As radiation and heat sources increase, the temperature rises, whereas the Dufour effect leads to the opposite outcome. The adjusted R-squared and R-squared for skin friction achieve a value of 99.92 %. Compared to the Dufour effect, the Nusselt number is more affected by the heat source and thermal radiation parameter. Some important contributions include discussing response surface methods and studying the complex connections between Casson fluid, porosity, and the stretching ratio parameter.
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来源期刊
International Journal of Thermofluids
International Journal of Thermofluids Engineering-Mechanical Engineering
CiteScore
10.10
自引率
0.00%
发文量
111
审稿时长
66 days
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