DOE OSTI · 2544213
Preliminary System Interface Failure Mode Analysis for Two Advanced Reactors
Abstract
This study explores two distinct Balance of Plant (BOP) configurations: the Rankine cycle for a sodium-cooled fast reactor (SFR) and the Brayton cycle for a gas-cooled reactor (GCR). As representative designs, the Power Reactor Innovative Small Module (PRISM) by GE Hitachi Nuclear Energy was selected for the SFR, while the Gas Turbine Modular Helium Reactor (GT MHR) by General Atomics was chosen for the gas-cooled reactor. Both configurations were adapted to deliver high-quality heat for industrial applications. A Failure Modes and Effects Analysis (FMEA) was conducted for each system to identify critical failure modes affecting key components. This study marks the first phase of a two-step design optimization approach, integrating FMEA into the design process. Based on the analysis, design modifications and mitigation strategies were proposed to enhance system resilience. The second phase, to be detailed in a subsequent report, will focus on the role of the control system in mitigating these failures. The FMEA serves as a foundation for defining the control topology, ensuring system resilience against component failures that could compromise essential functions, such as electricity and heat production.
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Ponciroli, Roberto [Argonne National Laboratory (ANL), Argonne, IL (United States)], Wang, Haoyu [Argonne National Laboratory (ANL), Argonne, IL (United States)], Vilim, Richard B. [Argonne National Laboratory (ANL), Argonne, IL (United States)]. 2025-02-28. Preliminary System Interface Failure Mode Analysis for Two Advanced Reactors. https://doi.org/10.2172/2544213
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