Citation: | Li Yang, Gong Houjun, Guo Kerong, Hu Yuwen, Yang Shengxing, Zan Yuanfeng, Yang Zumao, Huang Yanping. Experimental Study on Prototype Melt under Severe Accident[J]. Nuclear Power Engineering, 2023, 44(4): 240-246. doi: 10.13832/j.jnpe.2023.04.0240 |
[1] |
ASMOLOV V G, ASTAKHOVA Y V, DEGALTSEV Y G, et al. Study of carbon and separation effect on suboxidized corium stratification: Report MP-TR-2[R]. 2001
|
[2] |
ASMOLOV V G, ASTAHOVA Y V, YU V. VISHNEVSKIY, et al. Partitioning of fission products between the corium melt metallic and oxidic phases resulting from the STFM-FP tests: MP-TR-10[R]. Moscow, 2003.
|
[3] |
TSURIKOV D F, VISHNEVSKIY V Y, DYAKOV E K, et al. Study of melt stratification and distribution of major species (U, Zr, O, Fe(SS)) between layers under oxidizing atmosphere: STFM-Ox Test Series” MASCA report, MP-TR-27, Russian research Centre “KURCHATOV INSTITUTE”[R]. Moscow, 2006
|
[4] |
KHABENSKI V B, BECHTA S V, KRUSHINOV E V, et al. Experiments MA-7 and MA-9: zirconium partitioning between Oxidic and metallic phases of molten corium: MP-TR-28[R]. 2006.
|
[5] |
ASMOLOV V G, ABALIN S S, VESELKIN Y A, et al. RCW post-test analysis results: MP-TR-11[R]. 2003
|
[6] |
KANG K H, PARK R J, HONG S H, et al. An experimental study on layer inversion in the corium pool during a severe accident[J]. Nuclear Engineering and Design, 2014, 278: 163-170. doi: 10.1016/j.nucengdes.2014.07.005
|
[7] |
AN S M, SONG J H, KIM J Y, et al. Experimental investigation on molten pool representing corium composition at Fukushima Daiichi nuclear power plant[J]. Journal of Nuclear Materials, 2016, 478: 164-171.
|
[8] |
SONG J, MIN B, HONG S, et al. An investigation on the physical and chemical behaviors of fuel debris during severe accident progression[J]. Progress in Nuclear Energy, 2018, 106: 345-356. doi: 10.1016/j.pnucene.2018.02.028
|