Title of article
Heat transfer augmentation for external ice-on-tube TES systems using porous copper mesh to increase volumetric ice production
Author/Authors
Kazmierczak، نويسنده , , Michael J. and Nirmalanandhan، نويسنده , , Victor، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
14
From page
1020
To page
1033
Abstract
Substantial thermal performance improvement in ice-on-tube cold thermal energy storage systems (TES) is possible by making use of porous copper mesh as a Heat Conducting Enhancement Device (HCED). HCEDs are inexpensive heat transfer augmentation devices that can result in faster rate of ice growth and larger final steady state ice build volume by reducing the controlling thermal conduction resistance of the ice layer. This improves the competitiveness of external ice-on-tube systems as compared to other TES systems, such as dynamic ice harvesters and static internal melt systems. In this study the amount of ice growth enhancement is predicted theoretically, by performing simplified 1-D calculations, and is then validated in the laboratory through carefully controlled experiments. This study shows that ice volume increase between 50 and 90% is possible by using HCEDs of the type tested.
Keywords
Bac à glace , Tube , Amélioration , Copper , Cuivre , Thermal storage , Design , Ice tank , Tube , Improvement , thermal conductivity , additive , Conductivité thermique , Additif , Accumulation thermique , Conception
Journal title
International Journal of Refrigeration
Serial Year
2006
Journal title
International Journal of Refrigeration
Record number
1341321
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