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contributor authorB. Parkin
contributor authorK. Ravindra
date accessioned2017-05-08T23:35:50Z
date available2017-05-08T23:35:50Z
date copyrightJune, 1991
date issued1991
identifier issn0098-2202
identifier otherJFEGA4-27058#285_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/108747
description abstractTheoretical results on gaseous convective turbulent diffusion in steady axisymmetric flows are found to compare well with experimental results already in the literature. The investigation starts with the formulation of a highly idealized “slug-flow” model of the process for a quick estimate of the importance of turbulent boundary layer convection and for a comparison of previously published experimental and analytical results which had revealed order-of-magnitude discrepancies between calculated and measured air diffusion rates. Next, an existing two-dimensional convective diffusion model is adapted to axisymmetric cavity flow. Good agreement between experimental and calculated mass flow rates is found with a proper choice of turbulent diffusively from a Launder-Spaulding mixing-length model. The adapted “wrap around” model predicts a concentration boundary-layer thickness of the order of the cavity radius at the cavity terminus. Consequently, an axisymeetric analysis is also presented. From this it is found that the important part of the gaseous mass flow into the cavity occurs near the very front of the cavity where the concentration gradients are most severe. Downstream flow regions near the cavity are thereby depleted of dissolved air and the resulting concentration gradients are greatly reduced. Therefore the mass flow rate through downstream cavity surfaces are relatively unimportant and the simpler wrap around calculation can give useful engineering estimates of total mass flow rates.
publisherThe American Society of Mechanical Engineers (ASME)
titleConvective Gaseous Diffusion in Steady Axisymetric Cavity Flows
typeJournal Paper
journal volume113
journal issue2
journal titleJournal of Fluids Engineering
identifier doi10.1115/1.2909493
journal fristpage285
journal lastpage289
identifier eissn1528-901X
keywordsDiffusion (Physics)
keywordsCavity flows
keywordsFlow (Dynamics)
keywordsCavities
keywordsGradients
keywordsWrapping materials
keywordsTurbulent diffusion
keywordsBoundary layers
keywordsTurbulence
keywordsSlug
keywordsThickness
keywordsConvection AND Boundary layer turbulence
treeJournal of Fluids Engineering:;1991:;volume( 113 ):;issue: 002
contenttypeFulltext


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