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- W89399097 abstract "Enhanced convective heat transfer surfaces have been a subject of interest for quite some time. Many different methods have been used to increase the amount of heat transfered from a surface. However, nearly all surface enhancement methods come with a price, frictional losses. This thesis studies the use of enhanced convective heat transfer surfaces on air fins in the laminar, transitional, and turbulent flow regimes with emphasis on the transitional regime. A major goal of this thesis is to further the understanding of the influence of an enhanced wall geometry on the transition from laminar to turbulent flow. Causing the flow to transition at a lower Reynolds number is typically a desirable effect because heat transfer from the surface is increased with a relatively small frictional loss increase. The enhanced geometries studied are periodic bumped wall geometries with different ratios of the governing geometric parameters. Experimental tests to determine the heat transfer and friction characteristics of the surfaces over a range of Reynolds numbers from 600 to 3600 are discussed. Comparisons are made based on goodness factors that weigh the enhancement of heat transfer against the corresponding increase in frictional losses. Guidelines for selection of a bump geometry to promote high levels of heat transfer without causing large frictional losses are also presented." @default.
- W89399097 created "2016-06-24" @default.
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- W89399097 date "2007-01-01" @default.
- W89399097 modified "2023-09-27" @default.
- W89399097 title "Empirical investigation of enhanced air fins" @default.
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