半圆拉伸面上磁热扩散流体流动中的布朗运动

Shankar Rao Munjam , D Gopal , N. Kishan , Shoira Formanova , K. Karthik , Furqan Ahmad , M. Waqas , Manish Gupta , M. Ijaz Khan
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引用次数: 0

摘要

本研究探讨了经过曲面的卡松液流的质量和热量传输分析。当前的模型考虑了外加均匀磁场强度带来的磁强效应。此外,还使用 Buongiorno 纳米液体模型考虑了热泳和布朗运动的重要性。对拉伸片上液体流动的研究经常涉及一些实际问题,这些问题在微流体、玻璃纤维生产、制造、运输、金属挤压、隔热、玻璃生产、造纸和声学爆破等各个领域都非常重要,因此受到了研究人员的极大关注。利用相似变量可将支配偏微分方程 (PDE) 转换为常微分方程 (ODE)。使用有限差分法(FDM)对这些方程进行数值求解。通过改变不同的物理参数,绘制出浓度、温度和速度曲线图。磁性参数的增加会降低速度曲线。随着磁参数的增加,热曲线和浓度曲线也随之上升。随着卡松参数的升高,速度曲线也随之降低。热泳参数值的增加会增强热曲线和浓度曲线。随着曲率参数的增大,浓度和热剖面也随之减小。
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Brownian motion in a magneto Thermo-diffusion fluid flow over a semi-circular stretching surface
The current study explores the mass and heat transport analysis of a Casson liquid stream past a curved surface. The current model considers the effect of magnetic strength brought on by the strength of the applied uniform magnetic field. The significance of thermophoresis and Brownian motion are also taken into account using the Buongiorno nano-liquid model. The study of liquid flow over stretching sheets frequently addresses practical issues that have garnered significant attention from researchers due to their importance in various domains, including microfluidics, fibreglass production, manufacturing, transportation, metal extrusion, thermal insulation, glass production, paper manufacturing, and acoustic blasting. The governing partial differential equations (PDEs) are converted into ordinary differential equations (ODEs) using the similarity variables. These equations are numerically solved using the finite difference method (FDM). The concentration, temperature, and velocity graphs were produced by varying the different physical parameters. The upsurge in the magnetic parameter reduces the velocity profile. As the magnetic parameter increases, thermal and concentration profiles upsurge. The decrease in velocity profile can be seen as the Casson parameter rises. The intensification in values of thermophoretic parameter enhances the thermal and concentration profiles. The concentration and thermal profiles reduce as the curvature parameter upsurges.
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
138
审稿时长
14 weeks
期刊最新文献
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