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Analysis of Thermal Distribution Patterns in Multi-Occupancy Environments
Fatih Topak
,
Gregory S. Pavlak
, Koray Pekeriçli
,
Julian Wang
Architectural Engineering
Institute of Energy and the Environment (IEE)
Materials Research Institute (MRI)
Research output
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Chapter in Book/Report/Conference proceeding
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Engineering
Computational Fluid Dynamics
100%
Thermal Comfort
100%
Flow Rate
50%
Control System
50%
Dynamic Condition
50%
Control Strategy
50%
Control Loop
50%
Air Conditioning System
50%
Degree Celsius
50%
Airflow Rate
50%
System Efficiency
50%
Random Forest
50%
Energy Use in Building
50%
Building Occupant
50%
Indoor Space
50%
Temperature Distribution
50%
Air Flow
50%
Flow Velocity
50%
Simulation Parameter
50%
Microclimate
50%
Supplied Air
50%
Thermal Zone
50%
Keyphrases
Distribution Pattern
100%
Thermal Distribution
100%
Thermal Conditions
75%
Temperature Distribution
25%
Control System
25%
Computational Fluid Dynamics
25%
Control Strategy
25%
Personal Comfort
25%
Control Loop
25%
Temperature Value
25%
Computational Fluid Dynamics Simulation
25%
Thermal Comfort
25%
Air Conditioning
25%
Heating Ventilation
25%
Celsius
25%
Indoor Environment
25%
Single Occupancy
25%
Random Forest Algorithm
25%
Airflow
25%
Air Flow Rate
25%
System Efficiency
25%
Well-mixed
25%
Acceptable Conditions
25%
Shared Space
25%
Condition Data
25%
Unresolved Issues
25%
Occupant Comfort
25%
Building Energy Consumption
25%
Building Occupants
25%
Comfort Evaluation
25%
Office Space
25%
Thermal Zone
25%
Indoor Space
25%
Simulation Parameters
25%
Occupancy-based Control
25%
Supply Air
25%
Occupancy Conditions
25%