TRACE/PARCS Validation for BWR Stability Based on OECD/NEA Oskarshamn-2 Benchmark

Main Article Content

Tomasz Kozlowski
Christer Netterbrant
Matthew Hardgrove
Jeffrey Magedanz
Kostadin Ivanov
Aaron Wysocki
Yunlin Xu
Thomas Downar
Tomas Lefvert
Sean Roshan
Jose March-Leuba

Abstract

On February 25, 1999, the Oskarshamn-2 NPP experienced a stability event, which culminated in diverging power oscillations with decay ratio greater than 1.3. The event was successfully modeled by TRACE/PARCS coupled code system and the details of the modeling and solution are described in the paper. The obtained results show excellent agreement with the plant data, capturing the entire behavior of the transient including onset of instability, growth of oscillation (decay ratio) and the oscillation frequency. The event allows coupled code validation for BWR with a real, challenging stability event, which challenges accuracy of neutron kinetics (NK), thermal-hydraulics (TH) and TH/NK coupling. The success of this work has demonstrated the ability of 3-D coupled code systems to capture the complex behavior of BWR stability events. The problem is released as an international OECD/NEA benchmark, and it is the first benchmark based on measured plant data for a stability event with a DR greater than one. Interested participants are invited to contact authors for more information.

Article Details

Section
Articles