Synthesis of entropy generation in Cu–Al2O3 water-based thin film nanofluid flow

被引:0
|
作者
K. Sreelakshmi
G. Sandhya
G. Sarojamma
K. Vajravelu
AJ Chamkha
机构
[1] Sri Padmavati Mahila Visvavidyalayam,Department of Applied Mathematics
[2] University of Central Florida,Department of Mathematics
[3] Kuwait College of Science and Technology,Faculty of Engineering
来源
Journal of Thermal Analysis and Calorimetry | 2022年 / 147卷
关键词
MHD flow; Radiative flow; Entropy generation; Thin film flow; Hybrid nanofluid;
D O I
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中图分类号
学科分类号
摘要
In this research communication, assessment of entropy in the MHD flow of a hybrid nanofluid (Cu–Al2O3 /H2O) and a mono-nanofluid (Cu–H2O) of a thin film across an elongated plane with radiative heat is explored. Computational solutions of the equations describing the model are derived employing scaling analysis followed by RKF-45-based shooting technique with MATLAB software. A parametric analysis pertaining to the impressions of diverse physical parameters on the flow features is deliberated. The quantitative differences of the outcomes between the Cu–Al2O3 /H2O and Cu–H2O are brought out. Validation of the derived results of the current investigation ascertains a greater accuracy of the numerical code adopted in comparison with those results available in the literature. The temperature and the rate of thermal diffusion of the hybrid nanofluid are more prominent than those in the Cu–H2O case. Blade-shaped particles yield a temperature enhancement of 42.8% higher than the case of spherical-shaped particles in hybrid nanofluid, while the mono-nanofluid experiences a 22.2% enhancement. Free surface temperature of Cu–H2O with blade-shaped nanomaterials is 32.2% more than that in the spherical-shaped particles, while it is doubled in Cu–Al2O3 /H2O. Radiative emission has a diminishing impact on the entropy generation in both nanofluids.
引用
收藏
页码:13509 / 13521
页数:12
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