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Benchmark Simulation of the Natural Convection Shutdown Heat Removal Test Facility Using SAM

B. Hollrah, M. Bucknor, D. Lisowski, Y. Hassan, R. Vaghetto, R. Hu

Nuclear Technology / Volume 206 / Number 9 / September 2020 / Pages 1337-1350

Technical Paper / dx.doi.org/10.1080/00295450.2020.1745039

Received:December 11, 2019
Accepted:March 17, 2020
Published:October 7, 2020

Natural convection systems are a promising method to passively remove heat from reactor cavities during loss of forced flow accident scenarios. At Argonne National Laboratory (ANL), a highly instrumented Natural Convection Shutdown Heat Removal Test Facility (NSTF) was used to demonstrate the effectiveness of air-cooled natural convection systems. In previous work, RELAP5-3D simulations were performed on this facility with favorable comparisons to experiment for mass flow rate, pressure drop, air temperature increase, and air velocity. Both experimental and simulation efforts with this facility present a useful opportunity to perform a benchmark study with the System Analysis Module (SAM). SAM is an advanced thermal-hydraulic system code currently in development at ANL for advanced non–light water reactor safety analysis.