supported by the National Natural Science Foundation of China(Grant No.11972034);the Youth Innovation Promotion Association of the Chinese Academy of Science(Grant No.2020018).
Compared with periodic structures,quasi-periodic structures have superior band gap properties and topological interface states.In this paper,a one-dimensional quasi-periodic Fibonacci water wave metamaterial model tha...
Project supported by the National Natural Science Foundation of China(Grant Nos.U22A20242,52271260 and 52371263).
In this work, computational fluid dynamics (CFD)—based simulations and linear diffraction analysis are carried out to investigate the interaction between water waves and metamaterials composed of an array of C-shaped...
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...
This work was supported by the US National Science Foundation(Grant Nos.DMS-1517456,OCE-1634939);I am grateful to Prof.Theodore Y.Wu who has provided continuous encouragement and advice since I joined his research group in 1988 as a Ph.D.student.
We consider strongly nonlinear long waves on the surface of a homogeneous fluid layer.By modifying the formulation for the high-order spectral(HOS)method for waves in water of finite depth,we present a higher-order no...
Project supported by the National Natural Science Foundation of China(Grant Nos.51490673,51479025 and 51279029)
A simple theoretical dynamic model with a linearized damping coefficient is proposed for the gap resonance problem, as often referred to as the piston mode wave motion in a narrow gap formed by floating bodies. The re...
The Thirty-Second Workshop on Water Waves and Floating Bodies was held in Dalian from April23-26,2017,and hosted by State Key Laboratory of Coastal and Offshore Engineering,Dalian University of Technology(DUT).IWWWF...
supported by the National Science Council,(Grant No.NSC92-2611-E002-029)
When an incoming water wave is parallel to a porous breakwater, a paradoxical phenomenon exists in that by strictly following the potential flow boundary condition of normal flux continuity on the interfaces, the wate...
Project supported by the National Natural Science Foundation of China (Grant Nos. 50839001, 50979036);the National Science and Technology Major Special Project of China on Water Pollution Control and Management (Grant No. 2009ZX07528-006-01)
The purpose of this article is to model the detailed progress of wave propagation in curvilinear coordinates with an effective time-dependent mild slope equation. This was achieved in the following approach, firstly d...
supported by the National High Techology Research and Development Program of China (863 Program,Grant No.2007AA11Z130)
A numerical model was established for simulating water wave dynamic problems by adopting the Smoothed Particle Hydrodynamics (SPH) methods of iterative solution of Poisson's equation for pressure field, and meanwhi...
supported by the Innovation Program of Shanghai Municipal Education Commission (Grant No. 09YZ04);the State Key Laboratory of Ocean Engineering (Grant No. 0803);the Shanghai Rising-Star Program (Grant No. 07QA14022)
The hydroelastic interaction of an incident wave with a semi-infinite horizontal elastic plate floating on a homogenous fluid of finite depth is analyzed using the eigenfunction expansion method. The fluid is assumed ...