Abstract
This paper targets reducing fixed operations and maintenance (O&M) costs to $2/MWh for advanced reactor (AR) designs, an order of magnitude reduction from current nuclear fleets. This goal will be severely constrained if the underlying assumptions of O&M approaches and practices are not questioned and reexamined, especially today when changes can be implemented effectively and efficiently. Achieving a 90% reduction in AR O&M costs requires a completely new way of thinking—a paradigm shift—not through incremental, technology-focused approaches alone. Here, we address this challenge by evaluating the impact of moving to a shorter design life for major structures, systems, and components and shorter, more predictable refurbishment cycles as modeled by the commercial airline industry. This paper provides a brief overview of this different mindset to O&M applied to ARs: the build-to-replace approach. We provide a direct example analysis of a build-to-replace scenario by identifying and evaluating scenarios for reduced system and component lifetimes and associated replacement and refurbishment schedules to evaluate impacts on O&M costs and other lifecycle elements, such as structure, system, and component reliability.
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CITATION STYLE
Mandelli, D., & Sowder, A. (2024). Build-To-Replace Strategy to Reduce the O&M Costs of Advanced Reactors. In Proceedings of the 2024 International Congress on Advances in Nuclear Power Plants, ICAPP 2024 (pp. 258–268). American Nuclear Society. https://doi.org/10.13182/T130-44244
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