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"Systems Level Simulations of Heat and Mass Transport in Molten-Salt Reactors" presented by Rui Hu at Oak Ridge National Laboratory 2021 Molten-Salt Reactor Workshop. Objectives: Understanding the transient and steady state evolution of chemical species and isotopic composition in the molten salt Estimates of the quantities, species, and forms of radioactive materials that may be released from MSRs as the result of accidents Physics models required for robust element evolution Evolution of isotopes from nuclear reactions Transport of species due to physical and chemical mass transfer Database for relevant transport/chemical properties Multi-scale multi-physics computations Challenges remaining in modeling multi-species, multi-phase species transport in MSs, although codes exist to model MSR neutron transport, thermal hydraulics, structural materials, species transport, etc. SAM to provide the system-level thermal fluids modeling capabilities with PKE. Mole, to focus on source terms for chemical and isotopic evolution. Initial focus on SAM/Mole integration to provide system-level thermal fluids mass transport modeling capabilities in MSR. The scope will be extended to multi-scale, multi-physics mass accountancy modeling in MSR. ORNL MSRW 2021 Playlist: • Pathways to Clean Energy Future - Christin... http://ThoriumRemix.com/ Thorium & MSR & Nuclear assets used in Thorium Remix project.