Zobrazeno 1 - 10
of 65
pro vyhledávání: '"Yasuo Ose"'
Autor:
Tomoaki Kunugi, Yasuo Ose
Publikováno v:
Science and Technology of Nuclear Installations, Vol 2014 (2014)
A direct numerical simulation of the boiling phenomena is one of the promising approaches in order to clarify their heat transfer characteristics and discuss the mechanism. During these decades, many DNS procedures have been developed according to th
Externí odkaz:
https://doaj.org/article/121ca53726454b68b61e61b805b26c18
Autor:
Tomoaki Kunugi, Yasuo Ose
Publikováno v:
Proceeding of First Thermal and Fluids Engineering Summer Conference.
Autor:
Yasuo Ose, Tomoaki Kunugi
Publikováno v:
Energy Procedia. 9:605-618
In this study, in order to clarify the heat transfer characteristics of the subcooled pool boiling and to discuss its mechanism, a boiling and condensation model for numerical simulation on subcooled boiling phenomenon has been developed. The develop
Publikováno v:
The Proceedings of The Computational Mechanics Conference. :622-624
Publikováno v:
The Proceedings of the National Symposium on Power and Energy Systems. :B233
Publikováno v:
JAPANESE JOURNAL OF MULTIPHASE FLOW. 24:289-296
Publikováno v:
Progress in Multiphase Flow Research. 4:29-36
Publikováno v:
FUSION ENGINEERING AND DESIGN. 83(7-9):1092-1096
A low Pr number fluid flow, such as liquid-metals, has relatively less than turbulent heat transport capability because of the liquid-metals’ high thermal conductivity and its very large thermal boundary layer. Liquid-metals as coolant material in
Autor:
Hajime Akimoto, Hiroyuki Yoshida, Yasuo Ose, Ken Fujimura, Weizhong Zhang, Akitoshi Hotta, Akira Ohnuki
Publikováno v:
Journal of Power and Energy Systems. 2:456-466
In relation to the design of an innovative FLexible-fuel-cycle Water Reactor (FLWR), investigation of thermal-hydraulic performance in tight-lattice rod bundles of the FLWR is being carried out at Japan Atomic Energy Agency (JAEA). The FLWR core adop
Publikováno v:
TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series B. 73:474-481
A direct numerical simulation (DNS) of turbulent channel flow with high Reynolds number has been carried out to show the effects of magnetic field. In this study, the Reynolds number for channel flow based on bulk velocity ub, kinematic viscosity ν,