Abstract A visualization test of the fuel–coolant interaction in the Test for Real cOrium Interaction with water (TROI) test facility was carried out. To experimentally simulate the In-Vessel corium Retention (IVR)- External Reactor Vessel Cooling (ERVC) conditions, prototypic corium was released directly into the coolant water without a free fall in a gas phase before making contact with the coolant. Corium (34.39 kg) consisting of uranium oxide and zirconium oxide with a weight ratio of 8:2 was superheated, and 22.54 kg of the 34.39 kg corium was passed through water contained in a transparent interaction vessel. An image of the corium jet behavior in the coolant was taken by a high-speed camera every millisecond. Thermocouple junctions installed in the vertical direction of the coolant were cut sequentially by the falling corium jet. It was clearly observed that the visualization image of the corium jet taken during the fuel–coolant interaction corresponded with the temperature variations in the direction of the falling melt. The corium penetrated through the coolant, and the jet leading edge velocity was 2.0 m/s. Debris smaller than 1 mm was 15% of the total weight of the debris collected after a fuel–coolant interaction test, and the mass median diameter was 2.9 mm.
[1]
H. D. Kim,et al.
Results of the Triggered Steam Explosions from the TROI Experiment
,
2007
.
[2]
Kyoung-Ho Kang,et al.
CORIUM BEHAVIOR IN THE LOWER PLENUM OF THE REACTOR VESSEL UNDER IVR-ERVC CONDITION: TECHNICAL ISSUES
,
2012
.
[3]
D. Magallon,et al.
Characteristics of Corium Debris Bed Generated in Large-Scale Fuel Coolant Interaction Experiments.
,
2006
.
[4]
Jin Ho Song,et al.
Application of cold crucible for melting of UO2/ZrO2 mixture
,
2003
.
[5]
Rohit Kumar,et al.
Modeling corium jet breakup in water pool and application to ex-vessel fuel–coolant interaction analyses
,
2014
.
[6]
I. Huhtiniemi,et al.
Corium melt quenching tests at low pressure and subcooled water in FARO
,
2001
.
[7]
I. Huhtiniemi,et al.
Insight into steam explosions with corium melts in KROTOS
,
2001
.
[8]
Ik Kyu Park,et al.
Thermal-hydraulic aspects of FCIs in TROI corium/water interaction tests
,
2013
.