4.5 Article

Calculation of corium-refractory material interaction with the TIM model

Related references

Note: Only part of the references are listed.
Article Nuclear Science & Technology

Calculation of ablation instabilities during MCCI with the TIM model

J. M. Seiler et al.

Summary: The Transient Interface Model (TIM) is used to study ablation instabilities, which can lead to preferential directions of concrete ablation and pose a risk to mitigation criteria. These instabilities occur when the ablation regimes of corium/concrete interfaces are not consistent. The different ablation regimes are determined by the interface temperature. The study suggests that ablation instabilities are more likely at low power dissipation and small scales.

NUCLEAR ENGINEERING AND DESIGN (2023)

Article Nuclear Science & Technology

TIM model application to corium concrete interaction: Ablation regimes and instabilities

J. M. Seiler et al.

NUCLEAR ENGINEERING AND DESIGN (2019)

Article Nuclear Science & Technology

Transient refractory material dissolution by a volumetrically-heated melt

Jean Marie Seiler et al.

NUCLEAR ENGINEERING AND DESIGN (2014)

Article Thermodynamics

Modeling of heat transfer and solidification in LIVE L3A experiment

Quynh Trang Pham et al.

INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER (2013)

Article Nuclear Science & Technology

STATUS OF THE ASTRID CORE AT THE END OF THE PRE-CONCEPTUAL DESIGN PHASE 1

M. S. Chenaud et al.

NUCLEAR ENGINEERING AND TECHNOLOGY (2013)

Article Materials Science, Multidisciplinary

Melting and remelting phenomena

M. Rettenmayr

INTERNATIONAL MATERIALS REVIEWS (2009)

Article Nuclear Science & Technology

Model development for the calculation of corium-ceramic interaction during severe accidents in LWRs

JM Seiler et al.

NUCLEAR ENGINEERING AND DESIGN (2001)