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具有化学反应效应的垂直平板引起的纳米流体混合对流流动的熵产生分析。

Entropy generation analysis for mixed convection flow of nanofluid due to vertical plate with chemical reaction effects.

作者信息

Abdelhameed T N

机构信息

Basic Engineering Sciences Department, College of Engineering, Majmaah University, 11952, Majmaah, Saudi Arabia.

Mathematics Department, Faculty of Science, Beni-Suef University, Beni-Suef, 62514, Egypt.

出版信息

Sci Rep. 2023 Aug 16;13(1):13279. doi: 10.1038/s41598-023-39693-3.

Abstract

The analysis have been presented to observe the optimized flow of Casson nanofluid conveying the applications of external heat generation and mixed convection features. The problem is further influenced by chemical reactive species with order one. The significant of Bejan number is evaluated. A vertically moving with convective heat phenomenon endorsed the flow. The modeled problem is reflected in terms PDE's which are further simplifies with dimensionless form. The analytical outcomes have been established with implementation of Laplace technique. The graphical impact conveying the different parameters is assessed. The insight of skin friction and Nusselt number is observed via various curves. It is observed that entropy generation enhanced due to porosity parameter and magnetic number. With increasing Casson fluid parameter, the entropy generation decrease. Moreover, the Bejan number decreases for chemical reaction constant.

摘要

已进行分析以观察卡森纳米流体的优化流动,该流动具有外部热生成和混合对流特征的应用。该问题还受到一级化学反应物种的进一步影响。评估了贝扬数的重要性。具有对流热现象的垂直运动支持了该流动。建模问题以偏微分方程(PDE)的形式反映,这些方程进一步简化为无量纲形式。通过拉普拉斯技术的实施得出了分析结果。评估了表示不同参数的图形影响。通过各种曲线观察了表面摩擦和努塞尔数的情况。可以观察到,由于孔隙率参数和磁数,熵产生增加。随着卡森流体参数的增加,熵产生减少。此外,化学反应常数的贝扬数减小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6a0/10432543/6f485a7eafb4/41598_2023_39693_Fig1_HTML.jpg

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