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contributor authorD. R. Sabatino
contributor authorC. R. Smith
date accessioned2017-05-09T00:35:54Z
date available2017-05-09T00:35:54Z
date copyrightJanuary, 2009
date issued2009
identifier issn0889-504X
identifier otherJOTUEI-28752#011015_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/142215
description abstractThe spatial-temporal flow field and associated surface heat transfer within the leading edge, end-wall region of a bluff body were examined using both particle image velocimetry and thermochromic liquid crystal temperature measurements. The horseshoe vortex system in the end-wall region is mechanistically linked to the upstream boundary layer unsteadiness. Hairpin vortex packets, associated with turbulent boundary layer bursting behavior, amalgamate with the horseshoe vortex resulting in unsteady strengthening and streamwise motion. The horseshoe vortex unsteadiness exhibits two different natural frequencies: one associated with the transient motion of the horseshoe vortex and the other with the transient surface heat transfer. Comparable unsteadiness occurs in the end-wall region of the more complex airfoil geometry of a linear turbine cascade. To directly compare the horseshoe vortex behavior around a turning airfoil to that of a simple bluff body, a length scale based on the maximum airfoil thickness is proposed.
publisherThe American Society of Mechanical Engineers (ASME)
titleBoundary Layer Influence on the Unsteady Horseshoe Vortex Flow and Surface Heat Transfer
typeJournal Paper
journal volume131
journal issue1
journal titleJournal of Turbomachinery
identifier doi10.1115/1.2813001
journal fristpage11015
identifier eissn1528-8900
keywordsBoundary layers
keywordsVortices
keywordsBoundary layer turbulence
keywordsCylinders
keywordsVickers hardness
keywordsAirfoils
keywordsFlow (Dynamics)
keywordsHeat transfer AND Cascades (Fluid dynamics)
treeJournal of Turbomachinery:;2009:;volume( 131 ):;issue: 001
contenttypeFulltext


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