Thermodynamic Analysis for Solidification Path of Simulated Ex-Vessel Corium

30 Pages Posted: 2 May 2022

See all articles by Takumi Sato

Takumi Sato

Japan Atomic Energy Agency

Yuji Nagae

Japan Atomic Energy Agency

Masaki Kurata

affiliation not provided to SSRN

Andrea Quaini

University of Paris-Saclay - Service de la Corrosion et du Comportement des Matériaux dans leur Environnement (SCCME)

Christine Gueneau

affiliation not provided to SSRN

Abstract

Molten corium is considered to form in a severe accident at the Fukushima Daiichi Nuclear Power Station (FDNPS). Investigation of the primary containment vessel (PCV) inside the FDNPS showed that a significant amount of the molten corium reached the bottom of the pedestal region. The molten corium and concrete likely caused a complex interaction called Molten Corium Concrete Interaction (MCCI). Then, ex-vessel debris was formed after the solidification of the MCCI products and accumulated in the pedestal region. The solidification hysteresis of ex-vessel debris significantly influences its properties. We performed a thermodynamic analysis using the TAF-ID database to infer the solidification path of U-Zr-Al-Ca-Si-O molten corium, which was chosen for a prototypic system of ex-vessel debris. The solidification path for the CaO-rich sim-corium showed the following sequence: (i) melting as a single liquid phase at temperatures higher than 2430 K, (ii) selective solidification of the oxide-rich corium mainly consisted of fuel materials, and (iii) solidification of the remaining materials as a silicate matrix. In contrast, the solidification path for the SiO2-rich corium indicated that (i) formation of liquid miscibility gap above 2200 K, (ii) individual precipitation of solid phases in each liquid phase. Identified features of these solidification paths were in good agreement with the experimental data for the solidified sim-corium.

Keywords: Fuel debris, solidification path, ex-vessel debris, FDNPS accident

Suggested Citation

Sato, Takumi and Nagae, Yuji and Kurata, Masaki and Quaini, Andrea and Gueneau, Christine, Thermodynamic Analysis for Solidification Path of Simulated Ex-Vessel Corium. Available at SSRN: https://ssrn.com/abstract=4098680 or http://dx.doi.org/10.2139/ssrn.4098680

Takumi Sato (Contact Author)

Japan Atomic Energy Agency ( email )

Yuji Nagae

Japan Atomic Energy Agency ( email )

Masaki Kurata

affiliation not provided to SSRN ( email )

No Address Available

Andrea Quaini

University of Paris-Saclay - Service de la Corrosion et du Comportement des Matériaux dans leur Environnement (SCCME) ( email )

Christine Gueneau

affiliation not provided to SSRN ( email )

No Address Available

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