Integrated modeling of debris bed heat and mass transfer in the PWR lower plenum for severe accident analysis
Kune Y. Suh, Robert E. Henry
Abstract
Kune Y. Suh, Robert E. Henry
Abstract
An integrated model, simulating the interactions between the core debris and the reactor pressure vessel (RPV) lower head and internal structures during a severe accident, has been developed for the Modular Accident Analysis Program Version 4 (MAAP 4). Typical internal structures include pressurized water reactor (PWR) grid plates and flow distributors, core barrel, and upper plenum internals. Heat transfer from the core debris to the RPV and these structures could increase the temperatures to levels where the integrity of individual structures could be jeopardized.
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An integrated model, simulating the interactions between the core debris and the reactor pressure vessel (RPV) lower head and internal structures during a severe accident, has been developed for the Modular Accident Analysis Program Version 4 (MAAP 4). Typical internal structures include pressurized water reactor (PWR) grid plates and flow distributors, core barrel, and upper plenum internals. Heat transfer from the core debris to the RPV and these structures could increase the temperatures to levels where the integrity of individual structures could be jeopardized.
Key concepts: Plenum space, Pressurized water reactor, Reactor pressure vessel, Corium, Debris, Nuclear engineering, Cabin pressurization, Nuclear reactor core