[1] |
SPORE J W, TRAVIS J R, ROYL P, et al. GASFLOW: A computational fluid dynamics code for gases aerosols, and combustion, Volume 2: User’s manual, LA-13357-MS, FZKA-5994[R]. USA: LANL; Germany: FZK, 1998.
|
[2] |
TRAVIS J R, SPORE J W, ROYL P, et al. GASFLOW: A computational fluid dynamics code for gases aerosols, and combustion, Volume 1: Theory and computational model, LA-13357 MS, FZKA-5994[R]. USA: LANL; Germany: FZK, 1998.
|
[3] |
林诚格. 非能动安全先进核电厂AP1000[M]. 北京:原子能出版社,2008.
|
[4] |
WOODCOCK J, ANDREYCHEK T, CONWAY L, et al. WGOTHIC application to AP600 and AP1000, Rev. 1, WCAP-15862[R]. America: Westinghouse, 2004.
|
[5] |
TILLS J, NOTAFRANCESCO A. Application of the MELCOR code to design basis PWR large dry containment analysis, SAND2009-2858[R]. America: SANDIA, 2009.
|
[6] |
PHILIPP B, HANS-JOSEF A. Simulation of AP1000’s passive containment cooling with the German containment code system COCOSYS[C]∥Nuclear Energy for New Europe. Bovec, Slovenia: [s. n.], 2011.
|
[7] |
SINKUNAS S, GYLYS J. Analysis of laminar liquid film flowing down a vertical surface[C]∥Fourth International Conference on CFD in the Oil and Gas. Norway: [s. n.], 2005.
|
[8] |
YU Y Q, WEI S J, YANG Y H, et al. Experimental study of water film falling and spreading on a large vertical plate[J]. Progress in Nuclear Energy, 2012, 54: 22-28.
|
[9] |
BIRD R B, STEWART W E, LIGHTFOOT E N. Transport Phenomena[M]. New York: John Wiley and Sons, 1960.
|
[10] |
ROHSENOW W M, CHOI H. Heat, mass, and momentum transfer[M]. New Jersey: Prentice-Hall, 1961.
|
[11] |
OFSTUN R. AP1000 LOCA containment pressure analysis, Rev.2, APP-SSAR-GSC-523[R]. America: Westinghouse, 2003.
|
[12] |
Westinghouse. Shield building air inlet flow area design change, Rev. B, APP-GW-GEE-1307[R]. America: Westinghouse, 2010.
|