A series of laboratory experiments were conducted to investigate the 2–D kinematic field evolution around a suspended plate induced by solitary waves. The plate–type structure was rigid and suspended above the mean water level, while the solitary waves were generated by the wave maker to simulate the nearshore tsunami waves. The ratio of incident wave height to water depth was in the range of [0.200, 0.333], and the structural suspended height was in the range of [0.067, 0.200]. The velocity field around the deck was measured using the non–intrusive image–based PIV (Particle Image Velocimetry) method. As a result, the flow evolution was categorized into three phases: green water tongue generated, green water overtopping, and flow separation...
A three-dimensional numerical study has been undertaken to investigate the interactions of solitary ...
We investigated the propagation of shock waves in a prismatic rectangular channel with a horizontal ...
Wave breaking is the most characteristic feature of the ocean surface. Physical investigations (in t...
For the purpose of this paper, the in-house large-eddy simulation code, Hydro3D, is refined to study...
Graduation date: 2013To better understand the extreme local amplification of tsunami, the experiment...
Horizontal and vertical forces acting on a two-dimensional horizontal plate due to solitary waves ar...
In this study, a series of laboratory experiments were conducted to measure the run-up heights on pl...
A series of experiments and numerical simulations on the interactions between a solitary wave and an...
The objective of this study was to investigate experimentally solitary waves run-up on sloping beach...
A laboratory experiment was performed to investigate the three-dimensional turbulence and kinematic ...
This paper presents results of a solitary wave propagating over a submerged horizontal plate based o...
Wave interactions with vertical and sloping seawalls are indeed complicated, especially for the impa...
The impact of waves and bores generated by broken solitary waves on horizontal decks of coastal stru...
To improve our current understanding of tsunami-like solitary waves interacting with a row of vertic...
Destructive tsunamis can destroy coastal structures and move huge amounts of tsunami debris. Our cur...
A three-dimensional numerical study has been undertaken to investigate the interactions of solitary ...
We investigated the propagation of shock waves in a prismatic rectangular channel with a horizontal ...
Wave breaking is the most characteristic feature of the ocean surface. Physical investigations (in t...
For the purpose of this paper, the in-house large-eddy simulation code, Hydro3D, is refined to study...
Graduation date: 2013To better understand the extreme local amplification of tsunami, the experiment...
Horizontal and vertical forces acting on a two-dimensional horizontal plate due to solitary waves ar...
In this study, a series of laboratory experiments were conducted to measure the run-up heights on pl...
A series of experiments and numerical simulations on the interactions between a solitary wave and an...
The objective of this study was to investigate experimentally solitary waves run-up on sloping beach...
A laboratory experiment was performed to investigate the three-dimensional turbulence and kinematic ...
This paper presents results of a solitary wave propagating over a submerged horizontal plate based o...
Wave interactions with vertical and sloping seawalls are indeed complicated, especially for the impa...
The impact of waves and bores generated by broken solitary waves on horizontal decks of coastal stru...
To improve our current understanding of tsunami-like solitary waves interacting with a row of vertic...
Destructive tsunamis can destroy coastal structures and move huge amounts of tsunami debris. Our cur...
A three-dimensional numerical study has been undertaken to investigate the interactions of solitary ...
We investigated the propagation of shock waves in a prismatic rectangular channel with a horizontal ...
Wave breaking is the most characteristic feature of the ocean surface. Physical investigations (in t...