具有霍尔电流、热辐射和倾斜磁场效应的斜槽中杰弗里流体流动的不可逆性分析

IF 3 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL
Ravi Mahla, K. Kaladhar
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引用次数: 0

摘要

本文通过考虑倾斜磁场、索雷特参数、热辐射和霍尔电流的影响,研究了流经倾斜多孔通道的自然对流杰弗里流体的熵产生。在简化假设的基础上,通过适当的变换将控制方程转化为无量纲方程,并采用谱准线性化方法(SQLM)进行数值求解。利用图表分析了新热物理参数的影响。计算结果表明,增加索雷特参数、倾角、霍尔参数、磁参数和杰弗里流体参数会导致熵增。相反,随着辐射参数和通道倾角的增大,熵产生量会减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Irreversibility analysis of Jeffrey fluid flow in a sloping channel with Hall current, thermal radiation, and inclined magnetic field effects

Irreversibility analysis of Jeffrey fluid flow in a sloping channel with Hall current, thermal radiation, and inclined magnetic field effects

In this paper, the entropy generation of natural convection Jeffrey fluid flow through an inclined porous channel is investigated by taking into account the impact of angled magnetic field, Soret parameter, thermal radiation, and Hall current. On the basis of simplified assumptions, the governing equations are transformed into dimensionless equations by using suitable transformations, and the spectral quasi-linearization method (SQLM) is used for the numerical solution. Graphs are utilized to address the effects of new thermophysical parameters. The calculations reveal that increasing the Soret parameter, inclination angle, Hall parameter, magnetic parameter, and Jeffrey fluid parameter induces an increase in entropy generation. Conversely, it decreases as the radiation parameter and channel angle of inclination increase.

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来源期刊
CiteScore
8.50
自引率
9.10%
发文量
577
审稿时长
3.8 months
期刊介绍: Journal of Thermal Analysis and Calorimetry is a fully peer reviewed journal publishing high quality papers covering all aspects of thermal analysis, calorimetry, and experimental thermodynamics. The journal publishes regular and special issues in twelve issues every year. The following types of papers are published: Original Research Papers, Short Communications, Reviews, Modern Instruments, Events and Book reviews. The subjects covered are: thermogravimetry, derivative thermogravimetry, differential thermal analysis, thermodilatometry, differential scanning calorimetry of all types, non-scanning calorimetry of all types, thermometry, evolved gas analysis, thermomechanical analysis, emanation thermal analysis, thermal conductivity, multiple techniques, and miscellaneous thermal methods (including the combination of the thermal method with various instrumental techniques), theory and instrumentation for thermal analysis and calorimetry.
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