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查看斯高帕斯 (Scopus) 概要
施 聖洋
教授
機械工程學系
https://orcid.org/0000-0002-4146-2274
電子郵件
sshy
cc.ncu.edu
tw
網站
https://www.me.ncu.edu.tw/Faculty/faculty-more.php?id=23
h-index
2329
引文
31
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 …
2025
每年研究成果
概覽
指紋
網路
研究計畫
(22)
研究成果
(97)
類似的個人檔案
(1)
指紋
查看啟用 Shenq-Yang Shy 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
Isotropic Turbulence
85%
Burner
72%
Turbulence
70%
Turbulent Burning Velocity
66%
Premixed Turbulent Combustion
51%
Minimum Ignition Energy
50%
Ignition
45%
Equivalence Ratio
43%
Premixed Flame
42%
High Pressure
39%
Premixed
39%
Planar Solid Oxide Fuel Cell
37%
Flamelet
36%
Flow Distributor
34%
Cell Performance
33%
Turbulent Intensity
30%
Laminar Burning Velocity
28%
Ignition Transition
27%
Integral Length Scale
26%
Spark Gap
26%
Perforated Plate
26%
Karlovitz number
25%
Flow Uniformity
25%
Lewis number
25%
General Correlation
24%
Ammonia
23%
Anode Support
22%
Air Mixture
21%
Reynolds number
21%
Pressurization
21%
Autocatalytic Reaction
21%
Minimum Ignition Energy Transition
20%
Cell Stack
20%
Spherical Flame
20%
Differential Diffusion
20%
Electrochemical Impedance Test
20%
Radiative Heat Loss
20%
Turbulent Flow
20%
Turbulent Premixed Flames
19%
Flame Front
19%
Dual-chamber
19%
Reaction Zone
19%
Syngas
18%
Turbulent Flames
18%
Iso-octane
17%
Pressurized Solid Oxide Fuel Cell
17%
Spark Ignition
17%
Anodic
17%
Turbulent Flame Speed
17%
Fluctuating Velocity
16%
Engineering
Ignition
100%
Methane
87%
Solid Oxide Fuel Cell
81%
Isotropic Turbulence
76%
Premixed Flame
49%
Flamelets
47%
Air Mixture
46%
Equivalence Ratio
40%
Cell Performance
39%
Lewis Number
36%
Reynolds' Number
32%
Turbulent Flow
28%
Integral Length Scale
28%
Perforated Plate
27%
Quenching
26%
Premixed Turbulent Flame
26%
Reactant
24%
Flame Front
24%
Power Density
21%
Electrical Impedance
20%
Energy Transition
19%
Pressurization
19%
Elevated Pressure
19%
Premixed Combustion
19%
Spark Ignition
18%
Syngas
18%
Isooctane
17%
Fluctuating Turbulent Velocity
17%
Damkhler Number
15%
Flow Distribution
15%
Flame Propagation
14%
Radiative Heat Loss
14%
Nanosecond
14%
Schlieren
14%
Guide Vane
12%
Interconnects
12%
Heat Losses
11%
Horizontal Vessel
11%
Kinematic Viscosity
11%
Overvoltage
11%
Burning Rate
11%
Good Agreement
11%
Stability Test
10%
Surface Density
10%
Reaction Zone
9%
Single Curve
9%
Numerical Study
9%
Environmental Stress Cracking
9%
Settling Rate
9%
Concentration Polarization
9%