Transactions of the Atomic Energy Society of Japan
Online ISSN : 2186-2931
Print ISSN : 1347-2879
ISSN-L : 1347-2879
Article
Microscale Interfacial Behavior at Vapor Film Collapse on High-Temperature Particle Surface
Yutaka ABEDaisuke TOCHIO
Author information
JOURNAL FREE ACCESS

2009 Volume 8 Issue 1 Pages 11-18

Details
Abstract
  It has been pointed out that vapor film on a premixed high-temperature droplet surface should be collapsed to trigger vapor explosion. Thus, it is important to clarify the micromechanism of vapor film collapse behavior for the occurrence of vapor explosion. In the present study, microscale vapor-liquid interface behavior upon vapor film collapse caused by an external pressure pulse is experimentally observed and qualitatively analyzed. In the analytical investigation, interfacial temperature and interface movement were estimated with heat conduction analysis and visual data processing technique. Results show that condensation can possibly occur at the vapor-liquid interface when the pressure pulse arrived. That is, this result indicates that the vapor film collapse behavior is dominated not by fluid motion but by phase change.
Content from these authors
© 2009 Atomic Energy Society of Japan
Previous article Next article
feedback
Top