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查看斯高帕斯 (Scopus) 概要
呂 宗行
教授
民航研究所
電話
886 6 2757575 ext 63628
電子郵件
tsleu
mail.ncku.edu
tw
網站
http://www.iaa.ncku.edu.tw/~aeromems/
h-index
1479
引文
22
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。
1990 …
2023
每年研究成果
概覽
指紋
網路
專案
(36)
研究成果
(90)
類似的個人檔案
(6)
監製作品
(27)
指紋
查看啟用 Tzong-Shyng Leu 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
Ablation
24%
Actuators
22%
Airfoils
24%
Angle of attack
21%
Argon
36%
Atomization
22%
Atoms
30%
Blast furnaces
22%
Boundary conditions
28%
Coke ovens
26%
Computer simulation
45%
Condensation
24%
Cones
27%
Copper
41%
Electrodes
25%
Evaporators
22%
Flow fields
36%
Flow of fluids
59%
Flow patterns
28%
Flow rate
35%
Fluidics
47%
Fluids
57%
Gases
43%
Heat pipes
24%
Heat transfer
31%
Heating
22%
Hot Temperature
51%
Hydrogen
22%
Hydrogen production
32%
Imaging techniques
27%
MEMS
25%
Microchannels
100%
Microstructure
22%
Microsystems
39%
Molecular dynamics
28%
Nozzles
25%
Piezoelectric devices
30%
Pumps
55%
Reynolds number
22%
Substrates
29%
Surface treatment
25%
Temperature
29%
Tungsten
42%
Two phase flow
30%
Unsteady flow
45%
Velocity measurement
20%
Vortex flow
29%
Wind turbines
30%
X rays
39%
Physics & Astronomy
actuation
19%
actuator disks
16%
airfoils
15%
angle of attack
17%
argon
24%
blasts
21%
boundary conditions
17%
capillary pumped loops
16%
chips
19%
coke
25%
condensation
17%
cones
14%
convergent-divergent nozzles
15%
diffusers
16%
diffusion flames
23%
fabrication
14%
flames
17%
flow distribution
26%
flow velocity
22%
fluid flow
17%
fluidics
13%
fluids
20%
furnaces
17%
gases
20%
heat pipes
26%
heat transfer
24%
hydrogen
15%
hydrogen production
37%
microballoons
15%
microchannels
28%
molecular dynamics
14%
near wakes
16%
ovens
23%
performance
13%
pumping
22%
pumps
25%
rapid prototyping
16%
rarefied gases
24%
sensors
16%
simulation
18%
slender bodies
18%
suction
16%
Taguchi methods
15%
thermal protection
13%
tungsten
33%
unsteady flow
18%
vortices
18%
wakes
19%
waveforms
15%
wind turbines
16%
Chemical Compounds
Argon Atom
15%
Asymmetry
10%
Behavior as Electrode
6%
Catalytic Combustion
12%
Cluster Collision
10%
Coating Process
5%
Collagen Gel
15%
Collision
9%
Condensation
9%
Cooling
8%
Diffusion Flame
27%
Energy Transfer
6%
Evaporator
12%
Flame
17%
Flow
51%
Flow Kinetics
14%
Force
18%
Gas
12%
Heat
22%
Heat Exchanger
6%
Heat Pipe
38%
Heat Transfer
23%
Hydrogen
13%
Interfacial Energy
9%
Jet
20%
Levitation
14%
Liquid
11%
Liquid Film
6%
Meniscus
28%
Molecular Cluster
6%
Molecular Dynamics
24%
Momentum
16%
Peclet Number
6%
Plasma
6%
Plate Like Crystal
7%
Platinum
9%
Pressure
13%
Pump
9%
Reynolds Number
16%
Simulation
43%
Spray
11%
Surface
30%
Thermoanalysis
8%
Time
17%
Tungsten
31%
Turbine
12%
Valve
20%
Velocity
37%
Zeolite
7%