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NUMERICAL PREDICTION FOR INDOOR AIR MOVEMENT.
T. Kurabuchi
, T. Kusuda
Tokyo University of Science
Research output
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Contribution to journal
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Article
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peer-review
12
Citations (Scopus)
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Keyphrases
Numerical Prediction
100%
Turbulence Model
100%
Indoor Air Movement
100%
ASHRAE
100%
Two Dimensional
50%
Numerical Calculation
50%
Convection
50%
Three-dimensional (3D)
50%
Finite Difference Method
50%
United States
50%
Room Air
50%
Computer Program
50%
Thermal Comfort
50%
Calculation Approach
50%
Indoor Air Quality
50%
Japanese Experience
50%
Experimental Validation
50%
Cleanroom
50%
K-ε Turbulence Model
50%
Room Airflow
50%
Large Eddy Simulation Method
50%
Comfort Indoor
50%
Airflow Analysis
50%
Building Physics
50%
Air Convection
50%
Smoke Migration
50%
Convection Model
50%
Indoor Environmental
50%
Engineering
Numerical Prediction
100%
Indoor Air
100%
Air Movement
100%
Numerical Calculation
50%
Two Dimensional
50%
Simulation Method
50%
Smoke
50%
Flow Analysis
50%
Air Quality
50%
Thermal Comfort
50%
Clean Rooms
50%
Room Airflow
50%
Building Physics
50%
United States
50%
Material Science
Flow Analysis
100%
Large Eddy Simulation
100%
Finite Difference Method
100%