Debris bed 3D scanning, agglomeration fraction, particle size distribution as pool depth function, debris bed porosity estimate
Melt jet breakup
CLSVOF
National program "Accident Phenomena of Risk Importance" (APRI) supported by consortium of SSM and NPPs in Sweden
References: [1] Y. Xiang, D.S. Liang, A. Komlev, D. Fang, Y. Deng, L. Zhao, W. Ma. An experimental investigation on debris bed formation from fuel coolant interactions of metallic and oxidic melts, Applied Thermal Engineering 233 (2023) 121186.
[2] Y. Xiang, Y. Deng, D. Fang, D. Liang, W. Ma. Experimental investigation on debris bed formation from metallic melt coolant interactions. International Journal of Thermal Sciences 192 (2023) 108398.
[3] Y. Xiang, Y. Deng, D. Fang, N. Zhao, W. Ma. Experimental investigation on ex-vessel debris bed formation using low melting-point melt of binary metals. Progress in Nuclear Energy 157 (2023) 104564. IP/Copyright Situation: None Link to PIRT:
Implemented as part of the Seaknot EU funded project (HORIZON-EURATOM-2021-NRT-01 under Grant Agreement No. 101060327) - WP2.6 UNIPI (2024-2026)