Experimental Data for JBC Resistance, Sinkage, Trim, Self-Propulsion Factors, Longitudinal Wave Cut and Detailed Flow with and without an Energy Saving Circular Duct

Author:

Hirata Nobuyuki,Kobayashi Hiroshi,Hino Takanori,Toda Yasuyuki,Abdel-Maksoud Moustafa,Stern Frederick

Publisher

Springer International Publishing

Reference6 articles.

1. Hino, T., Hirata, N., Ohashi, K., Toda, Y., Zhu, T., Makino, K., et al. (2016). Hull form design and flow measurements of a bulk carrier with an energy-saving device for CFD validations. In Proc. 13th International Symposium on Practical Design of Ships and Other Floating Structures. Denmark: Copenhagen.

2. Jufuku, N., Hori, M., Itou, S., Toda, Y., & Hinatsu, M. (2015). SPIV stern flow measurement around operating propeller for with and without duct condition of Japan bulk carrier (in Japanese). In Conference Proceedings of the Japan Society of Naval Architects and Ocean Engineers (Vol. 21, pp. 309 − 312).

3. Shevchuk, I., Sahab, A., Stern, F., & Abdel-Maksoud, M. (2020). Experimental and numerical studies of the flow around the JBC hull form at straight ahead condition and 8° drift angle. In Proc. the 33rd Symposium on Naval Hydrodynamics. Japan: Osaka.

4. Yoon, H., Longo, J., Toda, Y., & Stern., F. (2015). Benchmark CFD validation data for surface combatant 5415 in PMM maneuvers – Part II: Phase-averaged stereoscopic PIV flow field measurements. Ocean Engineering, 109, 735–750.

5. Longo, L., Huang, H. P., & Stern, F. (1998). Solid/free-surface juncture boundary layer and wake. Experiments in Fluids, 25, 283 − 297.

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1. Computational fluid dynamics for naval hydrodynamics;Comptes Rendus. Mécanique;2023-02-08

2. Modification of k-$$\omega $$ turbulence model for ship resistance flow predictions;Journal of Ocean Engineering and Marine Energy;2022-09-14

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