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基于纳米材料和分子直径(d,d)的影响纳入的辐射胶体对热传递的研究:在多个工程系统中的应用。

Radiative Colloidal Investigation for Thermal Transport by Incorporating the Impacts of Nanomaterial and Molecular Diameters (d, d): Applications in Multiple Engineering Systems.

机构信息

Department of Mathematics, Faculty of Sciences, HITEC University, Taxila Cantt 47070, Pakistan.

Department of Mathematics, Mohi-ud-Din Islamic University, Nerian Sharif AJ&K 12080, Pakistan.

出版信息

Molecules. 2020 Apr 20;25(8):1896. doi: 10.3390/molecules25081896.

Abstract

Thermal enhancement and irreversible phenomena in colloidal suspension (AlO-HO) is a potential topic of interest from the aspects of industrial, mechanical and thermal engineering; heat exchangers; coolant car radiators; and bio-medical, chemical and civil engineering. In the light of these applications, a colloidal analysis of AlO-HO was made. Therefore, a colloidal model is considered and treated numerically. The significant influences of multiple parameters on thermal enhancement, entropy generation and Bejan parameter are examined. From the presented colloidal model, it is explored that AlO-HO is better for the applications of mechanical and applied thermal engineering. Moreover, fraction factor tiny particles are significant parameters which enhanced the thermal capability of the AlO-HO suspension.

摘要

胶体悬浮液(AlO-HO)的热增强和不可逆现象是工业、机械和热工程、热交换器、冷却剂汽车散热器以及生物医学、化学和土木工程等领域的一个潜在研究课题。鉴于这些应用,对 AlO-HO 进行了胶体分析。因此,考虑并数值处理了胶体模型。研究了多个参数对热增强、熵产生和 Bejan 参数的重要影响。从所提出的胶体模型中可以发现,AlO-HO 更适合机械和应用热工程的应用。此外,分数因子小颗粒是增强 AlO-HO 悬浮液热性能的重要参数。

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