Natural circulation characteristics of compact petal-shaped fuel rod bundle channel under rolling conditions

This study develops a multiscale computational model to examine the thermal–hydraulic response of a natural circulation loop equipped with a compact arranged petal-shaped fuel rod bundle under rolling motion. Rolling motion changes the gravity projection of loop sections and introduces inertial forces, thereby modifying the driving pressure. The results indicate that oscillatory flow is governed by the dynamic balance between time-varying driving pressure and flow resistance. Under static conditions, the rod bundle exhibits geometric periodicity and centrosymmetric temperature characteristics. Local temperature distributions along helical auxiliary lines show distinct thermal responses in petal-root and petal-tip regions. Petal-root regions generally have higher wall temperatures and weaker axial fluctuations, whereas petal-tip regions show lower average temperatures but stronger periodic fluctuations. Under rolling motion, the transverse coolant redistribution breaks temperature centrosymmetry, especially in the upper rod-bundle region and outer subchannels. These findings support thermal safety assessment and reliability evaluation of marine natural circulation systems.

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Publication Details

Journal
Annals of Nuclear Energy
Published
2026-09-11
DOI
https://doi.org/10.1016/j.anucene.2026.112836
Primary Topic
Heat transfer and supercritical fluids
Type
article
Field-Weighted Citation Impact
0.00

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article

Natural circulation characteristics of compact petal-shaped fuel rod bundle channel under rolling conditions

Jinyi Cao, Xuelong Li, Jinchen Wang, Weihua Cai et al.
Annals of Nuclear Energy
Heat transfer and supercritical fluids
article

Natural circulation characteristics of compact petal-shaped fuel rod bundle channel under rolling conditions

Jinyi Cao, Xuelong Li, Jinchen Wang, Weihua Cai, Wenchao Zhang, Jianchuang Sun
article en

Abstract

This study develops a multiscale computational model to examine the thermal–hydraulic response of a natural circulation loop equipped with a compact arranged petal-shaped fuel rod bundle under rolling motion. Rolling motion changes the gravity projection of loop sections and introduces inertial forces, thereby modifying the driving pressure. The results indicate that oscillatory flow is governed by the dynamic balance between time-varying driving pressure and flow resistance. Under static conditions, the rod bundle exhibits geometric periodicity and centrosymmetric temperature characteristics. Local temperature distributions along helical auxiliary lines show distinct thermal responses in petal-root and petal-tip regions. Petal-root regions generally have higher wall temperatures and weaker axial fluctuations, whereas petal-tip regions show lower average temperatures but stronger periodic fluctuations. Under rolling motion, the transverse coolant redistribution breaks temperature centrosymmetry, especially in the upper rod-bundle region and outer subchannels. These findings support thermal safety assessment and reliability evaluation of marine natural circulation systems.

Annals of Nuclear EnergyVol. 241
Electric Power University (VN), East China Jiaotong University (CN), North China Electric Power University (CN), China General Nuclear Power Corporation (China) (CN)
Education Department of Jilin Province, National Outstanding Youth Science Fund Project of National Natural Science Foundation of China
Openalex Percentile: Top 14%
Heat transfer and supercritical fluids
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Natural circulation characteristics of compact petal-shaped fuel rod bundle channel under rolling conditions — Jinyi Cao, Xuelong Li, et al. · Annals of Nuclear Energy (2026) | TGRS Research Map | TGRS