汪曙光
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个人信息Personal Information
副教授
性别:男
毕业院校:首尔大学
学位:博士
所在单位:船舶工程学院
学科:船舶与海洋结构物设计制造
办公地点:船舶工程学院(船池)111室
电子邮箱:
个人简介Personal Profile
汪曙光,副教授,博/硕士生导师
本硕毕业于天津大学船舶与海洋工程专业。2024年于韩国首尔国立大学获博士学位,师从Yonghwan Kim教授,同年在首尔国立大学继续博士后研究至2026年3月;长期致力于高性能船舶水动力特性研究,以计算流体力学(CFD)关键技术开发为核心,聚焦船舶水动力性能预报理论、实尺度船舶性能预报方法、高阶CFD网格技术与CFD应用标准化方法,研究方向涵盖船舶耐波与操纵性能CFD求解器开发、波浪增阻与主动控制、基于CFD的船型智能优化等,先后参与英国劳氏船级社基金会(Lloyd's Register Foundation)国际合作项目、韩国政府-企业联合研发项目等;担任CFD组负责人或主要技术完成人,主导开发了高速无人艇耐波性CFD分析程序及漂浮式风机半潜平台数值水池软件,实现工程化应用落地。2026年4月加入大连理工大学船舶工程学院。迄今发表SCI论文19篇,其中第一/通讯作者10篇;EI论文7篇,h-index为10;授权发明专利11项。获船舶与海洋水动力学国际研讨会(IWSH 2023)最佳论文奖。担任 Ocean Engineering、Energy、Journal of Ocean Engineering and Science、International Journal of Naval Architecture and Ocean Engineering 等国际期刊审稿人。
研究方向(详细介绍见文末)
基于OpenFOAM的船舶水动力性能预报求解器开发
基于CFD的船舶水动力性能预报
船舶水动力性能智能优化研究
实尺度船舶水动力性能预报
海上可再生能源开发与应用
招生信息
招收船舶与海洋工程、流体力学、工程力学、水利工程等相关专业的硕士研究生和博士研究生。课题组致力于为每位学生提供自由宽松的科研环境和平等真诚的交流氛围,鼓励大胆探索与跨学科创新,积极支持学生参加国内外学术交流。
欢迎对船舶水动力学、计算流体力学(CFD)、船型优化或海洋可再生能源等领域感兴趣的同学,不要求精通但愿意深入钻研,敢于尝试、不怕失败。
联系邮箱:wangsg@dlut.edu.cn
代表性论文
Jiang, Y., Han, L., Zhong, Y., Fan, C., Jin, G., & Wang, S.* (2026). Aerodynamic performance enhancement of vertical-axis wind turbines via a hybrid U-type blade configuration. Ocean Engineering, 362, 126150. (通讯作者)
Wang, S., Kim, Y., & Choi, J. (2026). Comparative assessment of model-scale extrapolation and full-scale CFD for ship power prediction at design and ballast drafts. Ocean Engineering, 357, 125572. (第一作者)
Choi, J., Wang, S., & Kim, Y. (2026). Comparative study of the effects of hull roughness on full-scale ship resistance using different numerical models. Applied Ocean Research, 171, 105067.
Wang, S., & Kim, Y. (2026). Hull-form optimization including the effects of added resistance. Journal of Hydrodynamics, 1–23. (第一作者,经国际水动力学大会ICHD遴选推荐)
姜宜辰, 曾黎, 董宇, 罗晓, 孙欢, 汪曙光* (2026). 基于伴流分析与旋涡演化的船舶湍流模型选择策略研究. 中国造船, 67, 202–210. (通讯作者)
Zhu, Z., & Wang, S.* (2025). Application of CFD method for ship added resistance tests with coupled sloshing effects. Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment, 239(4), 785–799. (通讯作者)
Choi, J., Kim, Y., Zhu, Z., & Wang, S. (2024). Numerical PMM test in finite depth. Ocean Engineering, 314, 119690.
Wang, S., & Kim, Y. (2024). CFD-based hull optimization in calm water using adaptive grid deformation method. Journal of Hydrodynamics, 36(2), 241–262. (第一作者,经国际船舶与海洋水动力学研讨会IWSH遴选推荐,获最佳学生论文奖)
Kim, B.-S., Wang, S., & Kim, Y. (2023). Numerical simulation of free-running turning test of ship in waves. Ocean Engineering, 288, 115951.
Zhu, Z., Kim, B.-S., Wang, S., & Kim, Y. (2023). Numerical study on static drift tests for ship maneuvering in regular waves. Physics of Fluids, 35(11).
Wang, S., Kim, B.-S., Zhu, Z., & Kim, Y. (2023). Enhanced body-force propeller model for non-uniform inflow flow and application to turning circle test of KCS in calm water. Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment, 237(4), 986–1007. (第一作者)
Wang, S., Kim, B.-S., Zhu, Z., & Kim, Y. (2023). Numerical course-keeping tests of ONR tumblehome in waves with different rudder control strategies. Ocean Engineering, 269, 113584. (第一作者)
Zhu, Z., Kim, B.-S., Wang, S., & Kim, Y. (2022). Study on numerical PMM test and its application to KCS hull. Applied Ocean Research, 127, 103327.
Wang, S., Lam, W. H., Cui, Y., Zhang, T., Jiang, J., Sun, C., ... & Hamill, G. (2019). Semi-empirical wake structure model of rotors using joint axial momentum theory and DES-SA method. Ocean Engineering, 191, 106525. (第一作者)
Wang, S., Lam, W. H., Cui, Y., Zhang, T., Jiang, J., Sun, C., ... & Hamill, G. (2018). Novel energy coefficient used to predict efflux velocity of tidal current turbine. Energy, 158, 730–745. (第一作者)
国际交流
2026.04 · Macao, China · The 16th International Conference on Hydrodynamics (ICHD 2026)
2025.08 · Fukuoka, Japan · The 13th International Workshop on Ship and Marine Hydrodynamics (IWSH 2025)
2025.05 · Shanghai, China · The 40th International Workshop on Water Waves and Floating Bodies (IWWWFB 2025)
2024.09 · Rome, Italy · The 15th International Conference on Hydrodynamics (ICHD 2024)
2023.08 · Espoo, Finland · The 12th International Workshop on Ship and Marine Hydrodynamics (IWSH 2023,最佳学生论文奖)
2023.06 · Ottawa, Canada · The 33rd International Ocean and Polar Engineering Conference (ISOPE 2023)
2022.06 · Online · The 32nd International Ocean and Polar Engineering Conference (ISOPE 2022)
2021.01 · Online · International Academic Exchange Seminar for Free-Surface Hydrodynamics in Ship and Ocean Engineering (SOE 2021)
2020.10 · Online · The 30th International Ocean and Polar Engineering Conference (ISOPE 2020)










