Insights into Significance of Radiative Inclined MHD on Mixed Convective Viscoelastic Flow of Hybrid Nanofluid over a Permeable Surface with Mass Transpiration

IF 1.3 4区 工程技术 Q3 ENGINEERING, MECHANICAL Journal of Engineering Thermophysics Pub Date : 2025-01-17 DOI:10.1134/S1810232824040179
G. M. Sachin, T. Maranna, U. S. Mahabaleshwar, L. M. Pérez, D. Laroze, G. Lorenzini
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Abstract

The hybrid nanofluid is extensively used in manufacturing for industrial uses because of its exceptional property of enhancing the heat transfer process. The purpose of the present work is to find novel explanations for the behavior of thermal radiation and inclined magnetohydrodynamics effects on the convective viscoelastic flow of water Al2O3–Cu hybrid nanofluids over an accelerating permeable surface with mass transpiration. The viscoelastic liquid concept is postulated with the benefit of hybrid nanofluids employing conventional flow patterns that are impacted by the magnetic field. Thermophysical properties of Al2O3–Cu and water are employed. Nonlinear PDE for momentum, temperature, and concentration are converted into non-dimensional ODE by employing the proper similarity transformations. The current study is reported to be in very good accordance with earlier research. The velocity field and energy distributions were depicted graphically to show the influence and typical behaviors of physical factors such as the viscoelastic parameter, the Richardson number, the radiation number, etc. In industrial applications, the temperature distribution influenced by radiation is quite important, specifically in accelerated plates where cooling the liquid is necessary to achieve the desired outcome.

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辐射倾斜MHD对混合纳米流体在具有质量蒸腾的可渗透表面上混合对流粘弹性流动的意义
混合纳米流体因其增强传热过程的特殊性能而广泛应用于工业制造中。本研究的目的是寻找热辐射和倾斜磁流体力学效应对水Al2O3-Cu混合纳米流体在具有质量蒸腾的加速渗透表面上对流粘弹性流动的新解释。粘弹性液体概念的假设是利用混合纳米流体采用受磁场影响的常规流动模式的好处。利用了Al2O3-Cu和水的热物理性质。采用适当的相似变换,将动量、温度和浓度的非线性偏微分方程转化为无量纲偏微分方程。据报道,目前的研究与早期的研究非常吻合。通过对速度场和能量分布的图形化描述,揭示了粘弹性参数、理查德森数、辐射数等物理因素对速度场和能量分布的影响及其典型行为。在工业应用中,受辐射影响的温度分布是相当重要的,特别是在加速板中,需要冷却液体以达到预期的结果。
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来源期刊
Journal of Engineering Thermophysics
Journal of Engineering Thermophysics THERMODYNAMICS-ENGINEERING, MECHANICAL
CiteScore
2.30
自引率
12.50%
发文量
0
审稿时长
3 months
期刊介绍: Journal of Engineering Thermophysics is an international peer reviewed journal that publishes original articles. The journal welcomes original articles on thermophysics from all countries in the English language. The journal focuses on experimental work, theory, analysis, and computational studies for better understanding of engineering and environmental aspects of thermophysics. The editorial board encourages the authors to submit papers with emphasis on new scientific aspects in experimental and visualization techniques, mathematical models of thermophysical process, energy, and environmental applications. Journal of Engineering Thermophysics covers all subject matter related to thermophysics, including heat and mass transfer, multiphase flow, conduction, radiation, combustion, thermo-gas dynamics, rarefied gas flow, environmental protection in power engineering, and many others.
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