CFD 기반 자항 해석의 격자 민감도 정량 평가Quantitative Assessment of Grid Sensitivity in CFD-Based Self-Propulsion Simulation
- Other Titles
- Quantitative Assessment of Grid Sensitivity in CFD-Based Self-Propulsion Simulation
- Authors
- 안준범; 김백현; 이상봉; 심민경; 손석호; 김정중
- Issue Date
- 12월-2025
- Publisher
- 대한조선학회
- Keywords
- Computational Fluid Dynamics(CFD; 전산유체역학); Self-propulsion(자항); STAR-CCM+; Grid sensitivity(격자 민감도)
- Citation
- 대한조선학회 논문집, v.62, no.6, pp 404 - 412
- Pages
- 9
- Journal Title
- 대한조선학회 논문집
- Volume
- 62
- Number
- 6
- Start Page
- 404
- End Page
- 412
- URI
- https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/11012
- DOI
- 10.3744/SNAK.2025.62.6.404
- ISSN
- 1225-1143
2287-7355
- Abstract
- This study performs resistance and self-propulsion simulations for four ship types using computational fluid dynamics(CFD) and evaluates the impact of grid resolution on prediction accuracy and numerical convergence. A total of 56 cases were analyzed by applying coarse, medium, and fine mesh systems. Convergence behavior was assessed based on the Grid Convergence Index(GCI) methodology. Among the 56 cases, 42 were included in the GCI analysis, showing order of convergence(p) greater than 1.5 and grid uncertainty(UG) below 3% in most conditions. In particular, when over 10 million cells were used, simulation results showed consistent trends across different speeds within the same hull form, indicating robust convergence and reliability.
Although a few cases were excluded due to irregular convergence behavior, their impact on the overall tendency was negligible.
The findings provide practical guidelines for grid arrangement and uncertainty quantification in CFD-based ship performance predictions.
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