基于凯勒方框的磁化重力驱动微波纳米流体流过具有交叉扩散效应的指数收缩表面的计算研究与工程应用

IF 6.2 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY alexandria engineering journal Pub Date : 2024-10-22 DOI:10.1016/j.aej.2024.10.003
Marouan Kouki , Saira Shukat , Ikram Ullah , Mohammad Mahtab Alam , Ali Hasan Ali
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引用次数: 0

摘要

磁化纳米流体和辐射对内燃机、燃烧器中的热量传输以及核爆炸中的能量消耗有显著影响。目前的尝试与当前的工程应用相关,如热交换器设计、可再生能源系统和纳米技术。因此,研究的主要关注点是探索在洛伦兹力和重力调制下微极性纳米流体流动中的辐射通量。流场中还包括交叉扩散的影响。支配流动的数学模型通过相似变量转化为 ODE。数值结果采用凯勒盒方法。对物理参数进行了综合分析,并以图形和表格形式显示了数值结果。获得的结果与已发表的结果进行了比较,发现两者非常吻合。研究发现,温度曲线和浓度曲线分别与 Soret 和 Dufour 有直接关系。温度曲线和浓度曲线与杜富尔效应和索雷特效应有直接关系。热场通过增强辐射、布朗运动和热泳参数而增长。此外,随着倾角系数的增大,表皮摩擦力增加,但努塞尔特数和舍伍德数下降。
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Keller-box based computational investigation of magnetized gravity-driven Micropolar nanofluid flow past an exponentially contracting surface with cross diffusion effect and engineering applications
Transport of heat in combustion engines, burners and consumption of energy via nuclear explosions is remarkably effected by magnetize nanofluid and radiation. Present attempt is relevant to the current Engineering applications; as design of heat exchangers, systems of renewable energy, and Nanotechnology. Therefore, main concern of the study is explored the radiative flux in Micropolar nanofluid flow under the Lorentz force and gravity modulation. The impacts of cross diffusion is also included in flow field. The mathematical model governing the flow are transformed into ODEs via similarity variables. The Keller box approach is utilized for numerical outcomes. A comprehensive analysis of the physical parameters is carried out, and numerical outcomes are displayed in graphical and tabular form. Obtained outcomes are compared with results that have already been published and found a good match. It has been found that temperature profile and concentration profile have a direct relation against Soret and Dufour respectively. Temperature profile and concentration profile has a direct relation against Dufour and Soret effects. Thermal field grows by enhancing radiation, Brownian motion and thermophoresis parameter. Furthermore, the skin friction.increases as the inclination factor grows up, but Nusselt and Sherwood numbers decline.
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来源期刊
alexandria engineering journal
alexandria engineering journal Engineering-General Engineering
CiteScore
11.20
自引率
4.40%
发文量
1015
审稿时长
43 days
期刊介绍: Alexandria Engineering Journal is an international journal devoted to publishing high quality papers in the field of engineering and applied science. Alexandria Engineering Journal is cited in the Engineering Information Services (EIS) and the Chemical Abstracts (CA). The papers published in Alexandria Engineering Journal are grouped into five sections, according to the following classification: • Mechanical, Production, Marine and Textile Engineering • Electrical Engineering, Computer Science and Nuclear Engineering • Civil and Architecture Engineering • Chemical Engineering and Applied Sciences • Environmental Engineering
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