Author:
Bouazaoui Kenza,Agounoun Rachid,Kadiri Imad,Sbai Khalid
Abstract
Abstract
Pool boiling heat transfer is a very efficient mode of heat transfer. It is used in various energy conversion and heat exchange systems and in the cooling of high energy density electronic components. In this work, heat transfer during nucleate boiling for a brass ribbon horizontally immersed in liquid nitrogen is experimentally and numerically studied. An experimental apparatus was built to conduct a pool boiling heat transfer study. The capabilities of Computational fluid dynamics (CFD) boiling model in pool boiling heat transfer is investigated. The computational model used combines the Euler/Euler two-phase flow. The general measurements of the super-heat, the influences of super-heat on the triggering of the boiling, as well as the critical flux which represents an important issue for the security of the systems were analyzed. The results of numerical simulations were compared with experimental data.
Reference18 articles.
1. Nucleate pool boiling heat transfer augmentation on hydrophobic self-assembly mono-layered aluminia nano-porous surfaces;Zhang;Int. J. Heat Mass Transf,2014
2. Enhanced boiling heat transfer on composite porous surface;Xu;Int. J. Heat Mass Transf,2015
3. Numerical investigation of nucleate boiling heat transfer on thin substrates;Sanna;Int. J. Heat Mass Transf,2014
4. Transient nucleate boiling heat transfer from a thick flat sample. Proceedings of the second International Symposium on Two-Phase Flow modeling and experimentation;Héas;Pise, Ed: E.T.S,1998
5. Transient heat transfer from smooth surfaces into liquid nitrogen;Drach;Cryogénies,1996
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