DOE OSTI · 3028366
CFD Simulations of Lower Plenum Mixing
Abstract
Review of model development and validation performed in the Advanced Reactor Technologies (ART) program for thermal mixing at the outlet of High Temperature Gas Reactors (HTGRs). Understanding the mixing that occurs in the lower plenum in an HTGR is necessary to facilitate design improvements and to perform reactor safety analysis. Numerical models are one possible approach to gain a better understanding of mixing in the lower plenum. Given the complexity of the geometry and the intense mixing present, it is important to perform validation of numerical models. Three models have been developed during FY2025: a porous media with Pronghorn, a Reynolds Averaged Navier Stokes (RANS) with STAR-CCM+, and a Large Eddy Simulation (LES) with NekRS. The reference facility is a scaled-down version of the lower plenum of the High Temperature Gas-Cooled Reactor - Pebble-bed Module (HTR-PM) demonstration reactor. Preliminary results of the porous media and the RANS shows general good agreement against experimental benchmark data. Future work will leverage high-fidelity results obtained through LES to guide model selection and improvements to the lower-fidelity models, with particular attention to the Pronghorn porous media.
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Coppo Leite, Victor [Idaho National Laboratory] (ORCID:000000024945384X), Hiland, Logan Joseph [Idaho National Laboratory], Reger, David Alan [Idaho National Laboratory] (ORCID:0000000282852789). 2025-07-30. CFD Simulations of Lower Plenum Mixing. https://www.osti.gov/biblio/3028366
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