Skip to main navigation
Skip to search
Skip to main content
VTT's Research Information Portal Home
Search content at VTT's Research Information Portal
Home
Profiles
Research output
Projects
Datasets
Research units
Research Infrastructures
Activities
Prizes
Press/Media
Impacts
Improving indoor climate and comfort with wooden structures
Carey J. Simonson
, Mikael Salonvaara
, Tuomo Ojanen
Research output
:
Book/Report
›
Report
26
Link opens in a new tab
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Improving indoor climate and comfort with wooden structures'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Wood Structures
100%
Indoor Comfort
100%
Indoor Climate
100%
Ventilation Rate
100%
Wallboard
88%
Hygroscopic
77%
Moisture
66%
Humidity
55%
Moisture Production
55%
Insulation
44%
Indoor Air Quality
44%
Indoor Humidity
33%
Moisture Transfer
33%
Indoor Air
33%
Moisture Performance
22%
Thermal Mass
22%
Production Increase
22%
Temperature Rise
22%
Hygroscopicity
22%
Indoor Temperature
22%
Ventilation Air
22%
Bedroom
22%
Internal Coating
22%
Vapour Resistance
22%
Wood Material
11%
Finland
11%
Helsinki
11%
Tight
11%
Control Method
11%
Active Area
11%
Germany
11%
Apartment Buildings
11%
Production Rate
11%
Ventilation
11%
Building Structure
11%
Mould Growth
11%
Rate of Increase
11%
Outdoor Temperature
11%
Italy
11%
Belgium
11%
Southern Europe
11%
Thermal Comfort
11%
Passive Method
11%
Nonhygroscopic
11%
Perceived Indoor Air Quality
11%
Thermal Performance
11%
Moisture Level
11%
Weather Data
11%
European Climate
11%
All-climate
11%
Indoor Structure
11%
High Thermals
11%
Central European
11%
Risk Increase
11%
Wooden Floor
11%
Concrete Floors
11%
Hot Climate
11%
Thermal Solar Energy
11%
Saints
11%
Linearly Dependent
11%
Trapani
11%
Weather Change
11%
Solar Shading
11%
Moderate Climate
11%
Humid Climate
11%
Moisture Storage
11%
Wall Surfaces
11%
HuBERT
11%
Wooden Ceiling
11%
INIS
moisture
100%
climates
100%
indoors
100%
ventilation
66%
humidity
44%
performance
33%
air
33%
production
27%
paints
27%
coatings
16%
vapors
16%
walls
16%
ceilings
16%
air quality
16%
risks
11%
floors
11%
weather
11%
outdoors
11%
thermal mass
11%
hygroscopicity
11%
occupations
11%
simulation
5%
wood
5%
solutions
5%
cities
5%
comparative evaluations
5%
levels
5%
finland
5%
data
5%
heating
5%
storage
5%
sensitivity
5%
growth
5%
occupants
5%
volume
5%
peaks
5%
europe
5%
surface area
5%
cooling
5%
germany
5%
apartment buildings
5%
molds
5%
adults
5%
structures (buildings)
5%
italy
5%
belgium
5%
thermal comfort
5%
shading
5%
Engineering
Indoor Air
100%
Input Parameter
60%
Ceilings
60%
Air Quality
60%
Moisture Transfer
60%
Moisture Performance
40%
Temperature Increase
40%
Simulation Result
20%
Active Area
20%
Absolute Humidity
20%
Outdoor Temperature
20%
Good Performance
20%
Thermal Performance
20%
Thermal Comfort
20%
Mould Growth
20%
Rate Increase
20%
Wooden Floors
20%
Apartment Building
20%
Germany
20%