Title of article
Maximum heat flux in relation to quenching of a high temperature surface with liquid jet impingement
Author/Authors
Aloke Kumar Mozumder، نويسنده , , Masanori Monde، نويسنده , , Peter Lloyd Woodfield، نويسنده , , Md. Ashraful Islam، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
12
From page
2877
To page
2888
Abstract
Experimental investigation has been conducted for quenching of hot cylindrical blocks made of copper, brass and steel with initial block temperature 250–400 °C by a subcooled water jet of diameter of 2 mm. The subcooling was from 5 to 80 K and the jet velocity was from 3 to 15 m/s. After impingement, the jet stagnates for a certain period of time in a small region near the centre and then the wetting front starts moving outwards. During this movement, when the surface temperature at the wetting front drops to 120–200 °C, the surface heat flux reaches its maximum value due to forced convection nucleation boiling. The maximum heat flux is a strong function of the position on the hot surface, jet velocity, block material properties and jet subcooling. A new correlation for maximum heat flux is proposed.
Keywords
Quenching , Wetting front , Inverse solution , Boiling curve , Impinging jet
Journal title
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
Serial Year
2006
Journal title
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER
Record number
1074165
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