 
 Naval Architecture and Ocean Engineering
通讯地址:
个人邮箱:ming.song@just.edu.cn
邮政编码:
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传真:
My research focuses on marine structures, ship-structure collisions and ice-structure interactions.
Ship structure; Offshore wind turbine (OWT); Ship-OWT collision; Ice-OWT interaction; Ice-structure interactions
 
 
         1. Ming Song. “Fluid Effect During Iceberg-Structure Interactions”in : Encyclopedia of Ocean Engineering, Springer, DOI: 10.1007/978-981-10-6963-5_128-1 2019.
1. Ming Song*, Ekaterina Kim, JørgenAmdahl. Fluid-Structure-Interaction analysis of an ice block-structure collision. Proceedings of the 22th International conference on Port and Ocean Engineering under Arctic Conditions, 2015.
Ming Song*, Ekaterina Kim, JørgenAmdahl, Marilena Greco, Souli Mhamed. Numerical investigation of fluid-ice-structure interaction during collision by an Arbitrary Lagrangian Eulerian method. Proceedings of the ASME 35th International Conference on Ocean, Offshore and Arctic Engineering,2016.
1. Ming Song*, Zhenhui Liu, JørgenAmdahl. Estimation of ship bow-iceberg impact force with the consideration of sliding effect. Proceedings of the 28th International Ocean and Polar Engineering Conference, 2018.
1. Ming Song*, Ekaterina Kim, JørgenAmdahl, Jun Ma, Yi Huang. A comparative analysis of the fluid-structure interaction method and the constant added mass method for ice-structure collisions. Marine Structures. 2016, 49, 58-75.
Ming Song*,Jun Ma, Yi Huang. Fluid-structure interaction analysis of ship-ship collisions. Marine Structures. 2017, 55: 121-136.
1. Ming Song, Li Zhou*. Study on estimation of ice load for the new Chinese polar research vessel. Journal of Ship Mechanics. 2019.
1. Ming Song, Wei Shi, Zhengru Ren, Li Zhou*. Numerical study of the interaction between level ice and wind turbine tower for estimation of ice crushing loads on structure. Journal of Marine Science and Engineering. 2019, 7(12), 439.
1. Ming Song*, Bin Qin, Li Zhou, Zhengru Ren. A Three-Dimensional Model for Strength Assessment of Type-C Independent Cargo Tank Structures. Journal of Ship Production and Design. Accepted. 2020.
1. Jing Zhang, Xuelei Kang, Xinghua Shi*, C. Guedes Soares, Ming Song. Low temperature effect on the mechanical properties of EH36 with strain rates. J. Mar. Sci. Eng. 2023, 11, 678. (SCI)
1. Yue Han, Xinyao Zhu*, Ming Song. Fatigue damage calculation of ship hulls caused by ice loads in broken ice fields. Ships and Offshore Structures. 2023.https://doi.org/10.1080/17445302.2022.2164420
Ming Song*, Wei Yuan, Kun Liu, Yue Han. An analysis of ship motion in an ice ridge field based on empirical approach. China Ocean Engineering.2023.
1. Ming Song, Zhiyu Jiang*, Kun Liu, Yue Han, Renwei Liu. Dynamic response analysis of a monopole-supported offshore wind turbine under the combined effect of sea ice impact and wind load. Ocean Engineering. 286 (2023),115587.
1. Ming Song, Zhiyu Jiang*, Wei Yuan. Numerical and analytical analysis of a monopile-supported offshore wind turbine under ship impacts. Renewable Energy. 2021(167):457-472 (SCI)
 
 
         —Natural Science Foundation of Jiangsu Province of China, Jiangsu, 2020
“Research for ice ridge-ship interaction”
Role: Applicant, Total Amount: 200,000 RMB
 
 
         Lecture Competition Second Prizes JUST,2023
Moan-Faltinsen Best Paper Award on Marine Structural Mechanics (one award annually)NTNU, 2016
Outstanding Teacher JUST,2023
 
 
         1. Ming Song. “Fluid Effect During Iceberg-Structure Interactions”in : Encyclopedia of Ocean Engineering, Springer, DOI: 10.1007/978-981-10-6963-5_128-1 2019.
1. Ming Song*, Ekaterina Kim, JørgenAmdahl. Fluid-Structure-Interaction analysis of an ice block-structure collision. Proceedings of the 22th International conference on Port and Ocean Engineering under Arctic Conditions, 2015.
Ming Song*, Ekaterina Kim, JørgenAmdahl, Marilena Greco, Souli Mhamed. Numerical investigation of fluid-ice-structure interaction during collision by an Arbitrary Lagrangian Eulerian method. Proceedings of the ASME 35th International Conference on Ocean, Offshore and Arctic Engineering,2016.
1. Ming Song*, Zhenhui Liu, JørgenAmdahl. Estimation of ship bow-iceberg impact force with the consideration of sliding effect. Proceedings of the 28th International Ocean and Polar Engineering Conference, 2018.
1. Ming Song*, Ekaterina Kim, JørgenAmdahl, Jun Ma, Yi Huang. A comparative analysis of the fluid-structure interaction method and the constant added mass method for ice-structure collisions. Marine Structures. 2016, 49, 58-75.
Ming Song*,Jun Ma, Yi Huang. Fluid-structure interaction analysis of ship-ship collisions. Marine Structures. 2017, 55: 121-136.
1. Ming Song, Li Zhou*. Study on estimation of ice load for the new Chinese polar research vessel. Journal of Ship Mechanics. 2019.
1. Ming Song, Wei Shi, Zhengru Ren, Li Zhou*. Numerical study of the interaction between level ice and wind turbine tower for estimation of ice crushing loads on structure. Journal of Marine Science and Engineering. 2019, 7(12), 439.
1. Ming Song*, Bin Qin, Li Zhou, Zhengru Ren. A Three-Dimensional Model for Strength Assessment of Type-C Independent Cargo Tank Structures. Journal of Ship Production and Design. Accepted. 2020.
1. Jing Zhang, Xuelei Kang, Xinghua Shi*, C. Guedes Soares, Ming Song. Low temperature effect on the mechanical properties of EH36 with strain rates. J. Mar. Sci. Eng. 2023, 11, 678. (SCI)
1. Yue Han, Xinyao Zhu*, Ming Song. Fatigue damage calculation of ship hulls caused by ice loads in broken ice fields. Ships and Offshore Structures. 2023.https://doi.org/10.1080/17445302.2022.2164420
Ming Song*, Wei Yuan, Kun Liu, Yue Han. An analysis of ship motion in an ice ridge field based on empirical approach. China Ocean Engineering.2023.
1. Ming Song, Zhiyu Jiang*, Kun Liu, Yue Han, Renwei Liu. Dynamic response analysis of a monopole-supported offshore wind turbine under the combined effect of sea ice impact and wind load. Ocean Engineering. 286 (2023),115587.
1. Ming Song, Zhiyu Jiang*, Wei Yuan. Numerical and analytical analysis of a monopile-supported offshore wind turbine under ship impacts. Renewable Energy. 2021(167):457-472 (SCI)
 
 
         —Natural Science Foundation of Jiangsu Province of China, Jiangsu, 2020
“Research for ice ridge-ship interaction”
Role: Applicant, Total Amount: 200,000 RMB
 
 
         Lecture Competition Second Prizes JUST,2023
Moan-Faltinsen Best Paper Award on Marine Structural Mechanics (one award annually)NTNU, 2016
Outstanding Teacher JUST,2023
 
 
         1. Ming Song. “Fluid Effect During Iceberg-Structure Interactions”in : Encyclopedia of Ocean Engineering, Springer, DOI: 10.1007/978-981-10-6963-5_128-1 2019.
1. Ming Song*, Ekaterina Kim, JørgenAmdahl. Fluid-Structure-Interaction analysis of an ice block-structure collision. Proceedings of the 22th International conference on Port and Ocean Engineering under Arctic Conditions, 2015.
Ming Song*, Ekaterina Kim, JørgenAmdahl, Marilena Greco, Souli Mhamed. Numerical investigation of fluid-ice-structure interaction during collision by an Arbitrary Lagrangian Eulerian method. Proceedings of the ASME 35th International Conference on Ocean, Offshore and Arctic Engineering,2016.
1. Ming Song*, Zhenhui Liu, JørgenAmdahl. Estimation of ship bow-iceberg impact force with the consideration of sliding effect. Proceedings of the 28th International Ocean and Polar Engineering Conference, 2018.
1. Ming Song*, Ekaterina Kim, JørgenAmdahl, Jun Ma, Yi Huang. A comparative analysis of the fluid-structure interaction method and the constant added mass method for ice-structure collisions. Marine Structures. 2016, 49, 58-75.
Ming Song*,Jun Ma, Yi Huang. Fluid-structure interaction analysis of ship-ship collisions. Marine Structures. 2017, 55: 121-136.
1. Ming Song, Li Zhou*. Study on estimation of ice load for the new Chinese polar research vessel. Journal of Ship Mechanics. 2019.
1. Ming Song, Wei Shi, Zhengru Ren, Li Zhou*. Numerical study of the interaction between level ice and wind turbine tower for estimation of ice crushing loads on structure. Journal of Marine Science and Engineering. 2019, 7(12), 439.
1. Ming Song*, Bin Qin, Li Zhou, Zhengru Ren. A Three-Dimensional Model for Strength Assessment of Type-C Independent Cargo Tank Structures. Journal of Ship Production and Design. Accepted. 2020.
1. Jing Zhang, Xuelei Kang, Xinghua Shi*, C. Guedes Soares, Ming Song. Low temperature effect on the mechanical properties of EH36 with strain rates. J. Mar. Sci. Eng. 2023, 11, 678. (SCI)
1. Yue Han, Xinyao Zhu*, Ming Song. Fatigue damage calculation of ship hulls caused by ice loads in broken ice fields. Ships and Offshore Structures. 2023.https://doi.org/10.1080/17445302.2022.2164420
Ming Song*, Wei Yuan, Kun Liu, Yue Han. An analysis of ship motion in an ice ridge field based on empirical approach. China Ocean Engineering.2023.
1. Ming Song, Zhiyu Jiang*, Kun Liu, Yue Han, Renwei Liu. Dynamic response analysis of a monopole-supported offshore wind turbine under the combined effect of sea ice impact and wind load. Ocean Engineering. 286 (2023),115587.
1. Ming Song, Zhiyu Jiang*, Wei Yuan. Numerical and analytical analysis of a monopile-supported offshore wind turbine under ship impacts. Renewable Energy. 2021(167):457-472 (SCI)
 
 
         —Natural Science Foundation of Jiangsu Province of China, Jiangsu, 2020
“Research for ice ridge-ship interaction”
Role: Applicant, Total Amount: 200,000 RMB
 
 
         Lecture Competition Second Prizes JUST,2023
Moan-Faltinsen Best Paper Award on Marine Structural Mechanics (one award annually)NTNU, 2016
Outstanding Teacher JUST,2023
 
 
         Dalian University of Technology (DUT), Dalian, China
—Ph.D., Design and Manufacture of ship and Ocean Structure, Spe 2017
PhD thesis: Study of Analysis Methods for Force and Structural Response in Ship Collisions
Advisors: Yi Huang (Professor), Jun Ma (Associate Professor), and JørgenAmdahl (Professor)
—B.S., NavalArchitecture and Ocean Engineering Jul 2011
Norwegian University of Science and Technology (NTNU), Trondheim, Norway
—Visiting Researcher, Marine Technology, Aug 2014-Aug 2016
Host: Jørgen Amdahl(Professor)
Ship structure; Advanced structural mechanics; Advanced structural dynamics; Ship vibration.
 
 
         