DOE OSTI · code-177567
Plant Reload Optimization (prlo)
Abstract
The PRLO framework is built on a modular and extensible architecture that tightly couples advanced evolutionary optimization algorithms with nuclear fuel depletion solvers (i.e., nuclear physics neutronics code). It supports exploring complex, high-dimensional design spaces constrained by user-specified operational, safety, and economic constraints. Objectives such as minimizing fresh fuel enrichment, flattening radial and axial power distributions, and maximizing discharge burnup are evaluated. PRLO’s equilibrium cycle optimization capability enables the identification of core configurations that maintain fuel cycle sustainability over extended planning horizons. Its integration with the RAVEN platform facilitates optimization of loading patterns or fuel shuffling schemes across multiple cycles. The interface with SIMULATE, a licensed industry-standard nodal code developed by Studsvik, ensures accurate neutronic and thermal-hydraulic feedback for reactor core design. PRLO’s automated workflow engine supports iterative design refinement, enabling utilities to streamline core design processes and meet evolving performance and regulatory targets.
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Kim, Junyung [Idaho National Laboratory] (0009000512447402), Abdo, Mohammad Abdo [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (0000000198456978), Wang, Congjian Wang [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (0000000207789927), Rollins, NicholasK. [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (0000000160661984), Cogliati, JoshuaJ. [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (0000000324718095), Nguyen, Khang [North Carolina State University] (0000000217889948), Gutierrez, JuanCristhian Luque [North Carolina State University, Raleigh, NC (United States)] (0009000183137023). 2025-12-18. Plant Reload Optimization (prlo). https://doi.org/10.11578/dc.20260505.1
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