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The influence of jet-grid turbulence on heat transfer from the stagnation region of a cylinder in crossflowThe effect of high-intensity turbulence on heat transfer from the stagnation region of a circular cylinder in crossflow was studied. The work was motivated by the desire to be able to more fully understand and predict the heat transfer to the leading edge of a turbine airfoil. In order to achieve high levels of turbulence with a reasonable degree of isotropy and homogeneity, a jet-injection turbulence grid was used. The jet grid provided turbulence intensities of 10 to 12 percent, measured at the test cylinder location, for downstream blowing with the blowing rate adjusted to an optimal value for flow uniformity. Heat transfer augmentation above the zeroturbulence case ranged from 37 to 53 percent for the test cylinder behind the jet grid for a cylinder Reynolds number range of 48,000 to 180,000, respectively. The level of heat transfer augmentation was found to be fairly uniform with respect to circumferential distance from the stagnation line. Stagnation point heat transfer results (expressed in terms of the Frossling number) were found to be somewhat low with respect to previous studies, when compared on the basis of equal values of the parameter Tu Re(1/2), indicating an additional Reynolds number effect as observed by previous investigators. Consequently, for a specified value of Tu Re(1/2), data obtained with a relatively high turbulence intensity will have a lower value of the Frossling number.
Document ID
19850017449
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Obrien, J. E.
(Pennsylvania State Univ. University Park, United States)
Vanfossen, G. J., Jr.
(NASA Lewis Research Center Cleveland, OH, United States)
Date Acquired
September 5, 2013
Publication Date
January 1, 1985
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
E-2555
NAS 1.15:87011
NASA-TM-87011
Report Number: E-2555
Report Number: NAS 1.15:87011
Report Number: NASA-TM-87011
Meeting Information
Meeting: Natl. Heat Transfer Conf.,
Location: Denver, CO
Country: United States
Start Date: August 4, 1985
End Date: August 7, 1985
Sponsors: ASME
Accession Number
85N25760
Funding Number(s)
PROJECT: RTOP 505-31-04
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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