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查看斯高帕斯 (Scopus) 概要
蔡 耀賢
教授
建築學系
https://orcid.org/0000-0001-6935-784X
電話
886 6 2757575 ext 54155
電子郵件
tsayys
mail.ncku.edu
tw
網站
http://sbed.tw/en
h-index
332
引文
9
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。
2000
2024
每年研究成果
概覽
指紋
網路
專案
(12)
研究成果
(127)
類似的個人檔案
(6)
監製作品
(33)
指紋
查看啟用 Yaw-Shyan Tsay 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
Moisture
100%
Air conditioning
84%
Office buildings
67%
Thermal comfort
63%
Hot Temperature
58%
Ventilation
55%
Pumps
52%
Atmospheric humidity
47%
Air quality
44%
Air
38%
Carbon
37%
Machine learning
36%
Energy utilization
33%
Temperature
32%
Energy efficiency
30%
Health risks
29%
Acoustic waves
28%
Energy conservation
28%
Rubber
28%
Metals
27%
Sound insulation
26%
Cooling systems
26%
Fungi
22%
Health
21%
Vapors
20%
Life cycle
20%
Computational fluid dynamics
19%
Multiobjective optimization
19%
Humidity control
18%
Architectural design
18%
Interiors (building)
17%
Cooling
17%
Moisture control
16%
Lighting
16%
Facades
16%
Physiology
15%
Productivity
15%
Learning algorithms
14%
Acoustics
14%
Reverberation
13%
Sampling
13%
Experiments
13%
Carbon footprint
13%
Formaldehyde
13%
Zeolites
12%
HVAC
12%
Adsorbents
12%
Silica gel
12%
Timber
11%
Rotors
11%
Earth & Environmental Sciences
ventilation
37%
buffering
34%
carbon emission
27%
office
27%
indoor air quality
25%
daylight
24%
simulation
24%
energy conservation
22%
air conditioning
22%
energy consumption
22%
formaldehyde
21%
rubber
21%
material
19%
impact source
18%
climate
17%
life cycle
17%
energy saving
16%
prediction
16%
humidity
14%
heat pump
13%
energy efficiency
12%
energy
12%
residential building
12%
germination
12%
risk reduction
11%
machine learning
11%
health risk
11%
vibration
9%
indoor environment
9%
volatile organic compound
9%
cost
9%
effect
9%
insulation
9%
temperature
8%
method
8%
air
8%
elderly population
8%
mortality
8%
metal
7%
cooling
7%
sensor
7%
health
7%
exposure
7%
mortality risk
7%
air quality
6%
evaluation method
6%
methodology
6%
productivity
5%
Physics & Astronomy
acoustics
48%
sound transmission
47%
reverberation
35%
mesh
34%
insulation
32%
ceilings
29%
performance
27%
machine learning
26%
wool
18%
metals
18%
Taiwan
13%
glass
13%
climate
13%
transmission loss
11%
clarity
11%
electroacoustics
11%
gypsum
10%
coverings
10%
functionals
9%
simulation
9%
absorptivity
8%
absorbers
8%
predictions
8%
cavities
8%
rooms
8%
rubber
7%
membranes
7%
low frequencies
7%
computer programs
7%
vibration
6%
massively parallel processors
6%
economy
6%
bricks
6%
cements
5%
costs
5%
steels
5%
resources
5%
root-mean-square errors
5%