半圆体上伯格微极流体流动中溶剂百分比和外部污染源浓度的意义

Q1 Chemical Engineering
Y. Veeranna , Prateek Kattimani , Ankur Kulshreshta , R.J. Punith Gowda , Ioannis E. Sarris
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引用次数: 0

摘要

目前的研究探讨了磁场对Boger微极液体在弯曲可拉伸薄片上运动的影响。进一步分析了热源/汇、非线性热辐射和污染物浓度的质量和热传递属性。微极性液体比牛顿液体更复杂,代表了现实世界的材料,如聚合物和生物液体。了解污染物如何改变这些流体的微观结构和流动行为对于医疗、生物学和材料研究用途至关重要。利用相似变量将控制偏微分方程转化为无因次常微分方程。利用Runge - Kutta - Fehlberg的四五阶(RKF-45)方法求解得到的ode。此外,还用图形描述了几种无量纲参数对各种轮廓的影响。随着材料参数和弛豫时间比的增大,速度分布减小。随着热辐射和散热器/热源参数的增大,温度分布加剧。污染物外源参数值的增大使浓度曲线增大。随着施密特数值的增加,浓度曲线减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Significance of solvent percentage and external pollutant source concentration in Boger-micropolar fluid flow across a semi-circular body
The current investigation explores the influence of the magnetic field on the Boger micropolar liquid motion over a curved stretchable sheet. Further, the mass and heat transportation attributes are analyzed with the significance of heat source/sink, nonlinear thermal radiation, and pollutant concentration. Micropolar liquids are more complicated than Newtonian liquids and represent real-world materials such as polymers and biological liquids. Understanding how contaminants alter these fluids' microstructure and flow behaviour is critical for medical care, biology, and materials research uses. The governing partial differential equations (PDEs) are converted to dimensionless ordinary differential equations (ODEs) using similarity variables. Furthermore, the obtained ODEs are solved using the Runge Kutta Fehlberg’s fourth-fifth order (RKF-45) approach. Moreover, the effects of several dimensionless parameters on the various profiles are depicted in graphs. The increase in the material parameter and relaxation time ratio decreases the velocity profile. As the values of thermal radiation and heat sink/source parameters increase, the temperature profile intensifies. The increase in values of the pollutant external source parameter increases the concentration profile. As the Schmidt number values increase, the concentration profile reduces.
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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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