Earth and Planetary Sciences
Feedback Mechanism
100%
Advection
100%
Physical Process
100%
London
88%
Urban Canopy
77%
Energy Balance
66%
Interfacial Energy
66%
Turbulent Mixing
55%
Atmospherics
44%
Near-Surface Geology
44%
Boundary Layer
33%
Nocturnal Boundary Layer
33%
Vertical Mixing
22%
Potential Temperature
22%
Atmospheric Forcing
22%
Heat Flux
22%
Earth-Surface Processes
11%
Human Health
11%
Long Wave Radiation
11%
Decoupling
11%
Latent Heat Flux
11%
Albedo
11%
Atmospheric Circulation
11%
Weather Forecast
11%
Atmospheric Model
11%
State of the Art
11%
Thermal Conductivity
11%
Thermal Comfort
11%
Wind Velocity
11%
Heat Storage
11%
Doppler Lidar
11%
Specific Heat
11%
Air Quality
11%
Wind Profile
11%
Kinetic Energy
11%
Engineering
Process Mechanism
100%
Feedback Mechanism
100%
Advection
100%
Boundary Layer
66%
Interfacial Energy
66%
Exchange Coefficient
33%
Heat Flux
33%
Mesoscale
22%
Numerical Weather Prediction Model
22%
Thermal Gradient
22%
Temperature Gradients
22%
Thermal Comfort
11%
Anthropogenic Activity
11%
Optical Radar
11%
Coupled Model
11%
Induced Change
11%
Air Quality
11%
Surface Process
11%
Single Line
11%
Surface Potential
11%
Model Response
11%
Optimization Approach
11%
Weather Research and Forecasting
11%
Thermal Conductivity
11%
Albedo
11%
Heat Capacity
11%
Human Health
11%
Turbulent Kinetic Energy
11%
Moisture Gradient
11%
Aerosol Optical Depth
11%
Latent Heat
11%
Heat Storage
11%