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查看斯高帕斯 (Scopus) 概要
胡 偉帆
教授
數學系
電子郵件
wfhu
math.ncu.edu
tw
網站
http://math.ncu.edu.tw/~wfhu/
h-index
416
引文
12
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。
2012
2024
每年研究成果
概覽
指紋
網路
研究計畫
(4)
研究成果
(26)
榮譽/獲獎
(1)
類似的個人檔案
(5)
指紋
查看啟用 Wei Fan Hu 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
Keyphrases
Amoeboid
24%
Amoeboid Movement
21%
Boundary Force
23%
Boundary Interface
52%
Circular Trajectory
21%
Confined Geometry
17%
Discretized
17%
Drop Deformation
20%
Elastic Tension
17%
Electric Field (E-field)
28%
Electric Force
23%
Electric Potential
38%
Electric Stress
25%
Electrohydrodynamic Simulation
70%
Elliptic Interface Problem
26%
Fractional Step
17%
Geometric Quantities
17%
Grid Based Particle Method
17%
Hidden Layer
20%
Immersed Boundary
64%
Immersed Boundary Method
83%
Immersed Interface
21%
Immersed Interface Method
100%
Inertia
17%
Inertia Effect
23%
Inextensible
35%
Inextensible Interface
17%
Interfacial Flows
17%
Jump Conditions
22%
Lagrangian
17%
Leaky Dielectric
23%
Level-set
17%
Navier-Stokes Flow
43%
Neural Network
25%
Noise Source
17%
Numerical Results
45%
Numerical Test
41%
Phoretic
39%
Poisson Solver
17%
Projection Method
20%
Run-and-tumble
26%
Shear Flow
19%
Solid Particles
17%
Soluble Surfactant
17%
Spherical Geometry
17%
Stokes Flow
46%
Swimmers
74%
Three-dimensional (3D)
40%
Unconditional Energy Stability
17%
Viscous Drops
32%
Engineering
Analytical Study
17%
Applicability
44%
Axisymmetric
61%
Boundary Condition
13%
Chaotic Motion
13%
Circular Trajectory
17%
Confined Geometry
17%
Degree of Freedom
17%
Delta Function
14%
Dielectric Fluid
17%
Dielectrics
35%
Diffusive
26%
Dimensional Space
11%
Dimensionless
16%
Discretization
13%
Elastic Force
14%
Electric Field
63%
Electric Potential
52%
Electric Stress
33%
Energy Engineering
23%
Finite Difference Method
14%
Fluid Velocity
17%
Fractional Step
17%
Good Accuracy
11%
Good Agreement
35%
Hidden Layer
14%
Hybrid Method
17%
Illustrates
53%
Inertia Effect
23%
Internal Degree
17%
Intrinsic Property
17%
Jump Condition
46%
Lagrange Multiplier Method
14%
Laplace Equation
17%
Level Set
17%
Minimal Model
17%
Navier-Stokes Equation
26%
Numerical Scheme
17%
Numerical Study
29%
Particle Surface
17%
Pclet Number
39%
Shape Change
35%
Shear Flow
22%
Singularities
14%
Solid Particle
17%
Spherical Geometry
17%
Stokes Equation
10%
Surfactant
19%
Two Dimensional
19%
Velocity Field
11%