Thermal Optimization and Comparison of Geometric Parameters of Rectangular and Triangular Fins with Constant Surfacing

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Florent Bunjaku, R. Filkoski, Naser Sahiti
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引用次数: 2

Abstract

This paper presents an optimization model of fins of rectangular and triangular profiles, based on a constant value of the transverse cutting surface, as well as the optimization of the ratio of efficiency of both fin profiles. The optimization model is based on the analytical and numerical simulation of the heat flux through fins in order to derive relevant thermo-physical parameters of the investigated fin profiles. The optimization of both fin profiles is carried out for different fin materials based on constant heat transfer coefficient and for different fin materials based on variable heat flux. The efficiency of fins as relevant fin goodness parameter is also analysed and the optimal values of the ratio of fin efficiency of both profiles is graphically presented and the optimal value estimated. Numerical simulation of fin models is carried out by using ANSYS/Fluent software.
矩形翅片与三角形翅片等曲面的热优化及几何参数比较
本文提出了基于横切面定值的矩形和三角形型翼的优化模型,以及两种翼型效率比的优化。该优化模型基于对翅片热流密度的解析和数值模拟,从而推导出所研究翼型的相关热物性参数。针对换热系数不变的不同翅片材料和变热流密度的不同翅片材料,分别对两种翅片进行了优化。分析了作为相关翅片质量参数的翅片效率,给出了两种翼型效率比的最优值,并对最优值进行了估计。利用ANSYS/Fluent软件对翅片模型进行了数值模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.00
自引率
17.60%
发文量
56
审稿时长
4.1 months
期刊介绍: The international journal publishes original and (mini)review articles covering the concepts of materials science, mechanics, kinematics, thermodynamics, energy and environment, mechatronics and robotics, fluid mechanics, tribology, cybernetics, industrial engineering and structural analysis. The journal follows new trends and progress proven practice in the mechanical engineering and also in the closely related sciences as are electrical, civil and process engineering, medicine, microbiology, ecology, agriculture, transport systems, aviation, and others, thus creating a unique forum for interdisciplinary or multidisciplinary dialogue.
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