相关期刊:《Applied Mathematics and Mechanics(English Edition)》《Journal of Hydrodynamics》《Journal of Ocean Engineering and Science》《Sustainable Marine Structures》更多>>
National Natural Sci-ence Foundation of China (Grant No.52088102);National Sci-ence Fund for Distinguished Young Scholars (Grant No.51825903);the Fundamental Research Funds for the Central Universities,Key R&D program of Shandong Province (Grant No.2021SFGC0701);National Natural Science Foundation of China (Grant No.52271283 and Grant No.52111530135);State Key Labo-ratory of Ocean Engineering (Shanghai Jiao Tong University) (Grant No.GKZD010081);Shenlan Project (Grant No.SL2021MS018 and Grant No.SL2022ZD201);the Research Council of Norway through the centre of Excellence Funding Scheme (Grant No.223254).
Vessel-shaped fish cages are promising large aquaculture structures developed in recent years,with an overall length of nearly 400 m.In this paper,a coupled hydroelasticity model of a vessel-shaped fish cage is used t...
The body-fixed coordinate system is applied to the wave-body interaction problem of a small-depth elastic structure which has both rigid and elastic body motions in head waves.In the weakly non-linear assumption,the p...
supported by the National Natural Science Foundation of China(Grant No.11872239).
The kinematic and dynamic boundary conditions on the free surface of a fluid should be posed for water wave problems.In the framework of potential theory for an inviscid and incompressible fluid with an irrotational m...
Structural integrity has remained a challenge for design and analysis of wave energy devices.A difficulty in assessment of the structural integrity is often laid in the accurate determination of the wave-induced loads...
Hydroelasticity of marine structures with and without forward speed is studied directly using time dependent Boundary Integral Equation Method with Neumann-Kelvin linearisation where the potential is considered as the...
Natural Science Foundation of Jiangsu Province,China(Grant No.BK20170216);the National Natural Science Foundation of China(Grant Nos.11772304,51709241).
The classical three-dimensional hydroelasticity of ships is extend to include the effect of fluid compressibility, which yields the three-dimensional sono-elasticity of ships. To enable the predictions of coupled tran...
funded by the Ministry of Higher Education(MOHE)of Malaysia under the Fundamental Research Grant Scheme(FRGS)No.FRGS17-042-0608
The numerical modelling of the interactions between water waves and floating structures is significant for different areas of the marine sector, especially seakeeping and prediction of wave-induced loads. Seakeeping a...
Rules of Classification Societies all around the world have made changes on design wave loads' value and fatigue influence factor modification due to the influence of springing and whipping on ultra-large containershi...
Project supported by the Russian Science Foundation(No.18-11-00021)
A mathematical model is presented, and numerical experiments are performed to describe the mechanics of the slow movement of a pipeline. The problem reduction algorithm to one-dimensional formulation is offered. Resul...
In this study,a numerical procedure has been proposed to analyze the equation of motion of the elastic plate which is elastic in nature and having shallow draft(small thickness)with arbitrary geometry subjected to lin...