Numerical assessment of viscoelastic tetra hybrid nanofluid flow across a stretchable rotatory disk under the Soret and Dufour aspects

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Multidiscipline Modeling in Materials and Structures Pub Date : 2024-06-05 DOI:10.1108/mmms-12-2023-0416
Bhagyashri Patgiri, Ashish Paul, Neelav Sarma
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Abstract

PurposeFluid flows through rotatory disks are encountered in industrial and practical engineering processes, such as computer storage devices, gas turbine rotators, rotating machinery, air cleaning machines, etc. The primary purpose of this research is to examine the combined aspects of variable electrical conductivity, thermal radiation, Soret and Dufour effects on a magnetohydrodynamic Maxwell single-walled carbon nanotubes–graphene oxide–multi-walled carbon nanotubes–copper (SWCNT–GO–MWCNT–Cu)/sodium alginate tetra-hybrid nanofluid flow through a stretchable rotatory disk.Design/methodology/approachThe modeled administrative equations of the present flow problem are converted to a non-dimensional system of ordinary differential equations by applying suitable similarity conversion and then solved numerically by implementing the bvp4c method. The impressions of noteworthy dimensionless parameters on velocity, temperature, concentration distributions, Nusselt number, skin friction and Sherwood number are reported via graphs and tables.FindingsThe authors figured out that the developed values of the rotation parameter diminish the temperature but enhance both the radial and angular velocities. Further, the mass and heat transmission rates are better for tetra-hybrid nanofluids than for ternary and hybrid nanofluids.Originality/valueThe present study emphasizes a special type of fluid called the tetra-hybrid nanofluid. The existing literature has not discussed the Maxwell tetra hybrid nanofluid flow through a stretchable rotatory disk with variable electrical conductivity. Besides, the novel aspects of magnetohydrodynamics, thermal radiation, Soret and Dufour effects are also incorporated into the present flow problem.
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在索雷特和杜富尔条件下,对流经可拉伸旋转盘的粘弹性四混合纳米流体的数值评估
目的在工业和实际工程过程中,如计算机存储设备、燃气轮机转子、旋转机械、空气清洁机等,都会遇到流体流经旋转盘的情况。本研究的主要目的是研究可变电导率、热辐射、索雷特效应和杜富尔效应对穿过可拉伸旋转盘的麦克斯韦单壁碳纳米管-氧化石墨烯-多壁碳纳米管-铜(SWCNT-GO-MWCNT-Cu)/海藻酸钠四混合纳米流体流动的综合影响。设计/方法/途径通过适当的相似性转换,将本流动问题的管理方程模型转换为非一维常微分方程系统,然后采用 bvp4c 方法进行数值求解。研究结果作者发现,旋转参数的设定值降低了温度,但提高了径向速度和角速度。此外,四元杂化纳米流体的质量和热传递率均优于三元和杂化纳米流体。现有文献尚未讨论麦克斯韦四混合纳米流体流经具有可变导电率的可拉伸旋转盘的问题。此外,磁流体力学、热辐射、索雷特效应和杜富尔效应等新的方面也被纳入到本流动问题中。
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来源期刊
CiteScore
3.70
自引率
5.00%
发文量
60
期刊介绍: Multidiscipline Modeling in Materials and Structures is published by Emerald Group Publishing Limited from 2010
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