相关期刊:《Computer Modeling in Engineering & Sciences》《International Journal of Modeling, Simulation, and Scientific Computing》《舰船科学技术》《Acta Oceanologica Sinica》更多>>
financially supported by the National Natural Science Foundation of China(Grant No.51979030);the Natural Science Foundation of Liaoning Province(Grant No.2021-KF-16-01);the Fundamental Research Funds for the Central Universities。
The maximum predicting error of the commonly used passive truncated mooring system method may reach 30%due to the difference of dynamic characteristics between the truncated and full-depth mooring line.In this paper,t...
financially supported by the National Natural Science Foundation of China(Grant No.51379095)
With the floating structures pushing their activities to the ultra-deep water, model tests have presented a challenge due to the limitation of the existing wave basins. Therefore, the concept of truncated mooring syst...
supported by the Natural Science Foundation of Zhejiang Province(Grant No.Y6110243);the Open Fund Project of Second Institute of Oceanography(Grant No.SOED1208);the Major Projects of the National Science and Technology(Grant No.2009ZX07424-001);the Special Program for the Science and Technology Plan of Zhejiang Province of China(Grant No.2009C13016)
The highest similarity degree of static characteristics including both horizontal and vertical restoring force-displacement characteristics of total mooring system, as well as the tension-displacement characteristics ...
Supported by the National Natural Science Foundation of China (Grant No. 10602055);Natural Science Foundation of Zhejiang Province (Grant No. Y6110243)
At present,equivalent water depth truncated mooring system optimization design is regarded as the priority of hybrid model testing for deep sea platforms,and will replace the full depth system test in the future.Compa...
supported by the Science Foundation of the Science and Technology Commission of Shanghai Municipality(Grant No. 11ZR1417800);the National Natural Science Foundation of China (Grant No. 50879045)
Hydrodynamic performance of an ultra deep turret-moored Floating Liquefied Natural Gas (FLNG) system is investigated. Hydrodynamic modeling of a turret-moored FLNG system, in consideration of the coupling effects of...
Supported by the National Natural Science Foundation of China (Grant Nos. 10602055 and 40776007) ;the Natural Science Foundation of China Jiliang University (Grant No. XZ0501)
The oil industry is now increasingly concentrating their efforts and activities in connection with de- veloping fields in deeper waters, ranging typically from 500 m to 3000 m worldwide. However, the modeling of a ful...