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查看斯高帕斯 (Scopus) 概要
劉 立方
Visiting Distinguished Chair Professor
水利及海洋工程學系
電子郵件
philip.liu
nus.edu
sg
網站
https://sites.google.com/view/nuscoastalgroup/people?authuser=0
h-index
14809
引文
66
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
1973 …
2024
每年研究成果
概覽
指紋
網路
研究成果
(417)
類似的個人檔案
(8)
指紋
查看啟用 Philip Li-Fan Liu 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Engineering & Materials Science
Water waves
100%
Solitons
79%
Tsunamis
54%
Water
35%
Breakwaters
34%
Wave propagation
34%
Boundary layers
32%
Beaches
27%
Diffraction
26%
Refraction
25%
Numerical models
24%
Fluids
23%
Turbulence
22%
Boundary integral equations
22%
Landslides
19%
Topography
16%
Scattering
15%
Surface waves
13%
Boundary conditions
12%
Shear stress
12%
Boundary layer flow
12%
Dams
12%
Sediment transport
11%
Bathymetry
11%
Navier Stokes equations
11%
Wavelength
10%
Hydrodynamics
10%
Integral equations
10%
Earthquakes
10%
Vorticity
10%
Velocity measurement
9%
Sediments
9%
Energy dissipation
9%
Porous materials
9%
Mass transfer
8%
Experiments
8%
Radiation
7%
Viscosity
7%
Computer simulation
7%
Vortex flow
7%
Kinetic energy
7%
Gravity waves
7%
Atmospheric pressure
6%
Ports and harbors
6%
Damping
6%
Advection
6%
Retaining walls
6%
Coastal engineering
6%
Wave equations
5%
Friction
5%
Earth & Environmental Sciences
tsunami
57%
water wave
38%
solitary wave
28%
breakwater
23%
breaking wave
21%
turbulence
16%
beach
15%
modeling
14%
wave propagation
13%
Boussinesq equation
11%
landslide
10%
Navier-Stokes equations
9%
edge wave
9%
simulation
9%
effect
9%
wave breaking
8%
wave runup
8%
boundary layer
8%
method
8%
fluid
7%
surf zone
7%
shoreline
7%
diffraction
7%
earthquake
7%
porous medium
7%
boundary condition
7%
hydrodynamics
6%
sediment transport
6%
bottom friction
6%
hazard assessment
6%
bathymetry
6%
wave height
6%
refraction
6%
water depth
6%
sediment
6%
potential flow
5%
damping
5%
bottom stress
5%
topography
5%
comparison
5%
storm surge
5%
shallow water
5%
field survey
5%
Mathematics
Solitary Waves
29%
Water Waves
26%
Boundary Layer
16%
Water
16%
Wave Propagation
16%
Fluid
13%
Boundary Layer Flow
10%
Experimental Data
10%
Nonlinear Waves
10%
Free Surface
9%
Horizontal
9%
Shear Stress
9%
Landslide
8%
Slope
7%
Turbulence
7%
Model
7%
Shallow Water
7%
Numerical Results
6%
Vertical
6%
Mass Transport
6%
Refraction
6%
Vorticity
5%
Stokes
5%
Turbulent Boundary Layer
5%
Numerical Solution
5%
Experiment
5%