Optimum Dimensions of Extended Surfaces Operating in a Convective EnvironmentSource: Applied Mechanics Reviews:;1992:;volume( 045 ):;issue: 005::page 155Author:A. Aziz
DOI: 10.1115/1.3119754Publisher: The American Society of Mechanical Engineers (ASME)
Abstract: This article is devoted to the review of the literature on optimum dimensions of extended surfaces losing heat by pure convection to the surroundings. The review covers straight (longitudinal) fins, annular (radial) fins, and spines of different profile shapes. The optimum dimensions for each shape are given both in terms of the volume of the material as well as the heat dissipation. The effects of tip heat loss, variable heat transfer coefficient, internal heat generation, temperature dependent thermal conductivity, base convection, and primary surface thickness on the optimum dimensions are discussed. The optimization procedure is illustrated with several numerical examples. Areas of extended surface technology where further optimization studies are needed are identified. It is hoped that the article would serve the dual purpose of the state-of-the-art as well as a pedagogical review.
keyword(s): Dimensions , Heat , Convection , Optimization , Fins , Shapes , Thickness , Heat transfer coefficients , Heat losses , Temperature , Energy dissipation AND Thermal conductivity ,
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| contributor author | A. Aziz | |
| date accessioned | 2017-05-08T23:37:17Z | |
| date available | 2017-05-08T23:37:17Z | |
| date copyright | May, 1992 | |
| date issued | 1992 | |
| identifier issn | 0003-6900 | |
| identifier other | AMREAD-25626#155_1.pdf | |
| identifier uri | http://yetl.yabesh.ir/yetl/handle/yetl/109571 | |
| description abstract | This article is devoted to the review of the literature on optimum dimensions of extended surfaces losing heat by pure convection to the surroundings. The review covers straight (longitudinal) fins, annular (radial) fins, and spines of different profile shapes. The optimum dimensions for each shape are given both in terms of the volume of the material as well as the heat dissipation. The effects of tip heat loss, variable heat transfer coefficient, internal heat generation, temperature dependent thermal conductivity, base convection, and primary surface thickness on the optimum dimensions are discussed. The optimization procedure is illustrated with several numerical examples. Areas of extended surface technology where further optimization studies are needed are identified. It is hoped that the article would serve the dual purpose of the state-of-the-art as well as a pedagogical review. | |
| publisher | The American Society of Mechanical Engineers (ASME) | |
| title | Optimum Dimensions of Extended Surfaces Operating in a Convective Environment | |
| type | Journal Paper | |
| journal volume | 45 | |
| journal issue | 5 | |
| journal title | Applied Mechanics Reviews | |
| identifier doi | 10.1115/1.3119754 | |
| journal fristpage | 155 | |
| journal lastpage | 173 | |
| identifier eissn | 0003-6900 | |
| keywords | Dimensions | |
| keywords | Heat | |
| keywords | Convection | |
| keywords | Optimization | |
| keywords | Fins | |
| keywords | Shapes | |
| keywords | Thickness | |
| keywords | Heat transfer coefficients | |
| keywords | Heat losses | |
| keywords | Temperature | |
| keywords | Energy dissipation AND Thermal conductivity | |
| tree | Applied Mechanics Reviews:;1992:;volume( 045 ):;issue: 005 | |
| contenttype | Fulltext |