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Land-Surface Heterogeneity Effects in the Planetary Boundary Layer
Brian P. Reen
, David R. Stauffer
,
Kenneth J. Davis
Meteorology and Atmospheric Science
Institute for Computational and Data Sciences (ICDS)
Institute of Energy and the Environment (IEE)
Research output
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Contribution to journal
›
Article
›
peer-review
17
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Scopus citations
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Dive into the research topics of 'Land-Surface Heterogeneity Effects in the Planetary Boundary Layer'. Together they form a unique fingerprint.
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Keyphrases
Planetary Boundary Layer
100%
Land Surface Heterogeneity
100%
Heterogeneous Treatment Effects
100%
Boundary-layer Depth
70%
Wind Speed
20%
Data Assimilation
20%
Capping Inversion
20%
Surface Buoyancy Flux
20%
State Universities
10%
Pennsylvania
10%
Three-dimensional (3D)
10%
Atmospheric Research
10%
Surface Fluxes
10%
Spatial Structure
10%
Environmental Conditions
10%
Fourier Analysis
10%
Mesoscale Models
10%
Low Correlation
10%
Moisture
10%
Fifth Generation
10%
Surface Forces
10%
Southern Great Plains
10%
Multiresolution Decomposition
10%
Non-hydrostatic
10%
Flight Track
10%
Wind Observation
10%
Inversion Strength
10%
Boundary Layer Wind
10%
Airborne LiDAR Data
10%
Temperature Observations
10%
National Centers
10%
Flux Inversion
10%
Earth and Planetary Sciences
Land Surface
100%
Planetary Boundary Layer
100%
Wind Velocity
20%
Data Assimilation
20%
Capping
20%
Pennsylvania
10%
Spatial Variation
10%
Surface Flux
10%
Optical Radar
10%
Atmospheric Research
10%
Hydrostatics
10%