Bubble dynamics under an impinging jet

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dc.contributor.author Ahmed, A.B. en
dc.contributor.author Hamed, M.S. en
dc.date.accessioned 2017-08-28T07:08:26Z
dc.date.available 2017-08-28T07:08:26Z
dc.date.issued 2016 en
dc.description Papers presented to the 12th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics, Costa de Sol, Spain on 11-13 July 2016. en
dc.description.abstract Wall heat flux in the case of jet boiling is greatly dependent on bubble size under the jet. A new force balance model has been proposed to determine bubble size addressing the dynamic effect of the jet on a growing bubble. Jet dynamics cause extra two force components compared to flow boiling case: asymmetric bubble growth force for a moving fluid and pressure force caused by jet stagnation. The model can not be completed without studying bubble growth under the jet. Bubble growth has been studied in the stagnation region for jet velocity of 0:65;0:8, and 0:9 m=s and degrees of subcooling of 13; 20, and 30 C and in the parallel flow region for jet velocity of 0.85 m/s and 7 C of subcooling. The instantaneous diameter of the bubble has been measured on the boiling surface by a high speed camera. As the force balance depends on bubble growth rate, Zuber model for non-uniform temperature field is found to best represent the experimental data with different b values.
dc.format.extent 6 pages en
dc.format.medium PDF en
dc.identifier.uri http://hdl.handle.net/2263/62031
dc.language.iso en en
dc.publisher HEFAT en
dc.rights University of Pretoria en
dc.subject Impinging jet en
dc.subject Bubble dynamics en
dc.title Bubble dynamics under an impinging jet en
dc.type Presentation en


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