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HNÍZDIL, M. CHABIČOVSKÝ, M. RAUDENSKÝ, M. LEE, T.
Original Title
Heat Transfer during Spray Cooling of Flat Surfaces with Water at Large Reynolds Numbers
Type
journal article - other
Language
English
Original Abstract
We present a new Nusselt number correlation for spray cooling at large Reynolds numbers and high surface temperatures for water sprays impinging perpendicularly onto a flat plate. A large set of experimental data on spray cooling of hot surfaces with water has been analyzed, including the water temperature effects. For large-scale cooling, such as in industrial processes, large number of injection parameters such as number, type, pressure, and angle of the spray injection has led to a multitude of correlations that are difficult for general and practical applications. However, by synthesizing a set of experimental data where all of the above parameters have been varied, we find that the Nusselt number and therefore the heat transfer coefficient can be cast accurately as a function of the Reynolds number. Water is widely used as the coolant during spray cooling, and has a specific phase change characteristic. At large Reynolds number (Re > 100,000) and surface temperature (Ts > 600°C) ranges, which are of interest in large-scale spray cooling, the effect of water temperature is quite significant as it affects the film boiling close to the surface. This effect also has been parameterized using experimental data.
Keywords
Impinging Flow, Spray Cooling, Heat Transfer, Measurements
Authors
HNÍZDIL, M.; CHABIČOVSKÝ, M.; RAUDENSKÝ, M.; LEE, T.
Released
27. 7. 2016
Publisher
Scientific Research publishing
ISBN
2329-3330
Periodical
Journal of Flow Control, Measurement & Visualization
Year of study
4
Number
3
State
United States of America
Pages from
104
Pages to
113
Pages count
10
URL
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=69089
Full text in the Digital Library
http://hdl.handle.net/11012/204298
BibTex
@article{BUT140001, author="Milan {Hnízdil} and Martin {Chabičovský} and Miroslav {Raudenský} and Tae-Woo {Lee}", title="Heat Transfer during Spray Cooling of Flat Surfaces with Water at Large Reynolds Numbers", journal="Journal of Flow Control, Measurement & Visualization", year="2016", volume="4", number="3", pages="104--113", doi="10.4236/jfcmv.2016.43010", issn="2329-3330", url="http://www.scirp.org/journal/PaperInformation.aspx?PaperID=69089" }