DOE OSTI · 3383064
Modeling Flow in a Microreactor Core: From High-Fidelity CFD to Subchannel Analysis
Abstract
The accurate prediction of pressure drop in tightly packed, low–Reynolds number (Re) bare rod bundles is essential for the thermal-hydraulic design of the Microreactor Applications Research Validation and EvaLuation (MARVEL) reactor and other microreactor concepts. However, existing friction factor correlations, particularly the upgraded Cheng-Todreas (UCTD) correlation, have limited validation for the small pitch-to-diameter ratios (P/Ds) and transitional flow conditions characteristic of these systems. In this work, we perform high-fidelity large-eddy simulations (LESs) of both an infinite bare rod bundle and a finite bare 37-pin scalloped rod bundle across the range 1000≤ 𝑅𝑒 ≤5500. The simulations reveal strong gap vortex–driven transitional behavior and indicate that the UCTD may underpredict the friction factor by up to 28% at 𝑃/𝐷 = 1.05. Using the LES-calculated pressure drops, we formulate a new friction factor correlation that follows the Cheng-Todreas functional form but is calibrated for low-Re and tightly packed geometries representative of a MARVEL-like reactor. The correlation is implemented in the MOOSE (Multiphysics Object-Oriented Simulation Environment) subchannel module and compared against both the LES and UCTD predictions. Across all subchannel types, the proposed model reduces the streamwise velocity differences from as high as 44% (UCTD) to below 9%, and decreases the pressure gradient differences from 13% to 25% (UCTD) to 0.7% to 7% relative to the LES results. These results suggest that the new correlation has the potential to improve the pressure drop and flow field predictions for such geometries, highlighting the importance of high-fidelity simulations in supporting microreactor thermal-hydraulic model development and motivating future pressure drop experiments for compact rod bundles to further validate these findings.
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Aldeia Machado, Luiz C. [Pennsylvania State Univ., University Park, PA (United States)] (ORCID:000000024673470X), Bourdot Dutra, Carolina [Pennsylvania State Univ., University Park, PA (United States)], Coppo Leite, Victor [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (ORCID:000000024945384X), Merzari, Elia [Pennsylvania State Univ., University Park, PA (United States)], Kyriakopoulos, Vasileios [Idaho National Laboratory (INL), Idaho Falls, ID (United States)] (ORCID:0000000244315480). 2026-06-03. Modeling Flow in a Microreactor Core: From High-Fidelity CFD to Subchannel Analysis. https://doi.org/10.1080/00295450.2026.2666728
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