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Oral presentation

Three-dimensional particle-based simulation of heat transfer behavior from molten mixture pool to structural wall

Funakoshi, Kanji*; Kato, Masatsugu*; Liu, X.*; Liu, W.*; Morita, Koji*; Kamiyama, Kenji

no journal, , 

In order to eliminate the energetic potential in the case of postulated core-disruptive accidents (CDAs) of sodium-cooled fast reactors, introduction of a fuel subassembly with an inner-duct structure (FAIDUS) has been proposed. In the present study, to demonstrate a function for early fuel discharge, analytical study using three-dimensional particle-based simulations were performed against a series of multi-component, multi-phase thermal hydraulics phenomena, which are formation of molten pool of fuel and steel mixture caused by disruption of fuel pins, and, heat-transfer from the pool to duct wall.

Oral presentation

3D particle-based simulation of molten pool-to-duct wall heat transfer in EAGLE ID1 in-pile test

Sakaguchi, Kazuya*; Funakoshi, Kanji*; Kato, Masatsugu*; Liu, X.*; Liu, W.*; Morita, Koji*; Kamiyama, Kenji

no journal, , 

no abstracts in English

Oral presentation

3D particle-based simulation of molten pool-to-duct wall heat transfer in EAGLE ID1 in-pile test

Sakaguchi, Kazuya*; Funakoshi, Kanji*; Kato, Masatsugu*; Liu, X.*; Liu, W.*; Morita, Koji*; Kamiyama, Kenji

no journal, , 

no abstracts in English

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