DOE OSTI · 3014029
Assessing fuel cycle design options for advanced microreactors
Abstract
Microreactor (MR) technology have recently gained traction due to their reduced construction cost compared to traditional large reactors. Their small physical geometry results in increased neutron leakage and deteriorated neutron economy which limits the achievable burnup of MR fuel. Refueling strategy currently discussed in MR design community is the battery-like refueling which is involve replacing the entire reactor core at the end of their operational cycle. Here, this paper investigates partial core refueling as means to increase MR fuel burnup and improve fuel cycle economy as a result. Two fuel cycle design strategies have been successful. These are the partial core refueling and partial core refueling combined with assembly rotation. Both strategies have been tested to operate a heatpipe-cooled MR referred to as the eVinci-like core for 72 Effective Full Power Months (EFPMs). The partial core refueling showed to reduce the refueling requirements by 18% compared to the battery-like refueling strategy. This corresponds to 10.5% reduction in the Net Present Value (NPV) of fuel cost over the 72 EFPMs of operation. The partial core refueling combined with rotation case reduces the refueling requirements by 29% (corresponding to 14.5% reduction in NPV of fuel cost) compared to the battery-like refueling strategy.
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Al-Dawood, Khaldoon Ali Mohammad [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (ORCID:0000000205184537), Golden, Davis William [Texas A & M Univ., College Station, TX (United States)], Jaradat, Mustafa Kamel Mohammad [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (ORCID:0000000327506055), Abou-Jaoude, Abdalla [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (ORCID:0000000330228463). 2025-11-18. Assessing fuel cycle design options for advanced microreactors. https://doi.org/10.1016/j.nucengdes.2025.114577
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