EMHD Impact on Two-Phase Flow of Micropolar Nanofluid with Dissipative Heat and Chemical Reaction

IF 1.6 4区 工程技术 Q3 ENGINEERING, CHEMICAL
Dr. Subhajit Panda, Rupa Baithalu, Dr. P. K. Pattnaik, Prof. S. R. Mishra
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引用次数: 0

Abstract

In comparison to the traditional study of micropolar fluid that enhances the transport properties, it also favors augmenting the fluid temperature for the interaction of diversified physical quantities. The proposed model for the flow of micropolar nanofluid is improved for the integration of radiating heat and dissipative heat through a permeable medium along with Joule and Darcy dissipation. The present model is reported in the dimensional form that is transformed into ordinary with corresponding standard form using similarity rules. Further, a numerical method combined with the shooting and Runge–Kutta technique is utilized to get the results of each of the profiles. The parameters contributing the fluid flow profiles are deployed graphically, and the rate coefficients are also visualized.

Abstract Image

EMHD对微极性纳米流体耗散热两相流动及化学反应的影响
传统的微极流体研究侧重于提高流体的输运特性,而微极流体研究更倾向于提高流体温度以适应不同物理量的相互作用。提出的微极性纳米流体流动模型进行了改进,将辐射热量和耗散热量结合焦耳耗散和达西耗散进行了积分。本模型以量纲形式报告,并利用相似规则转化为具有相应标准形式的普通形式。此外,利用数值方法结合射击和龙格-库塔技术得到了每条剖面的结果。影响流体流动曲线的参数以图形方式部署,速率系数也以可视化方式显示。
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来源期刊
Chemical Engineering & Technology
Chemical Engineering & Technology 工程技术-工程:化工
CiteScore
3.80
自引率
4.80%
发文量
315
审稿时长
5.5 months
期刊介绍: This is the journal for chemical engineers looking for first-hand information in all areas of chemical and process engineering. Chemical Engineering & Technology is: Competent with contributions written and refereed by outstanding professionals from around the world. Essential because it is an international forum for the exchange of ideas and experiences. Topical because its articles treat the very latest developments in the field.
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