[1] Joseph Milnes, Dimitris Drikakis. Qualitative assessment of RANS models for Hypervapotron flow and heat
transfer [J]. Fusion Engineering and Design, 2009, 84: 1305–1312.
[2] Krepper E, Bostjan Koncar, Yury Egorov. CFD modeling of subcooled boiling-concept,validation and application to fuel assembly design [J]. Nuclear Engineering and Design, 2007, 237 (7): 716–731.
[3] Anglart H, Nylund O, Kurul N, et al. CFD prediction of flow and phase distribution in fuel assemblies with spacers NUERTH-7 [J]. Nuclear Engineering and Design, 1995, 177: 215–228.
[4] Mikic B B, Rohsenow W M. A new correlation of pool-boiling data including the fact of heating surface characteristics [J]. ASME J. Heat Trans., 1969, 91: 245– 250.
[5] Bostjan Koncar, Ivo Kljenak, Borut Mavko. Modelling of local two-phase flow parameters in upward su-cooled flow boiling at low pressure [J]. Heat and Mass Transfer, 2004, 47: 1499–1513.
[6] Bostjan Koncar, Borut Mavko. Modelling of low-pressure subcooled flow boiling using the RELAP5 code [J]. Nuclear Engineering and Design, 2003, 220: 255–273.
[7] Lee T H, Park G C, Lee D J. Local flow characteristics of subcooled boiling flow of water in a vertical concentric annulus [J]. Multiphase Flow, 2002, 28: 1351–1368.
[8] 许铁军, 黄生洪, 宋云涛, 等. EAST装置第一壁热沉冷却结构关键工艺的研究 [J]. 核聚变与等离子体物理, 2010, 30(3): 245–250.
[9] Nygren R E. Actively cooled plasma facing components for long pulse high power operation [J]. Fusion Engineering and Design, 2002, 60: 547–564.
[10] 谢韩, 宋云涛, 姚达毛. EAST超导托卡马克偏滤器水冷结构设计 [J]. 核聚变与等离子体物理, 2009, 29(3): 331–334. |