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Local cooling and warming effects of forests based on satellite observations
by
Kalnay, Eugenia
, Li, Shuangcheng
, Mu, Qiaozhen
, Zhao, Maosheng
, Motesharrei, Safa
, Li, Yan
in
704/106/47
/ 704/158/2454
/ Albedo
/ Boreal forests
/ Climate
/ Climate Change
/ Climate effects
/ Climate models
/ Cooling
/ Cooling effects
/ Data acquisition
/ Data processing
/ Environmental Policy
/ Evapotranspiration
/ Forest management
/ Forestry
/ Forests
/ Humanities and Social Sciences
/ Models, Theoretical
/ multidisciplinary
/ Rainfall
/ Rainforest
/ Satellite observation
/ Science
/ Science (multidisciplinary)
/ Spacecraft
/ Spatial discrimination
/ Spatial resolution
/ Summer
/ Taiga
/ Temperate forests
/ Temperature
/ Tropical forests
/ Winter
2015
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Local cooling and warming effects of forests based on satellite observations
by
Kalnay, Eugenia
, Li, Shuangcheng
, Mu, Qiaozhen
, Zhao, Maosheng
, Motesharrei, Safa
, Li, Yan
in
704/106/47
/ 704/158/2454
/ Albedo
/ Boreal forests
/ Climate
/ Climate Change
/ Climate effects
/ Climate models
/ Cooling
/ Cooling effects
/ Data acquisition
/ Data processing
/ Environmental Policy
/ Evapotranspiration
/ Forest management
/ Forestry
/ Forests
/ Humanities and Social Sciences
/ Models, Theoretical
/ multidisciplinary
/ Rainfall
/ Rainforest
/ Satellite observation
/ Science
/ Science (multidisciplinary)
/ Spacecraft
/ Spatial discrimination
/ Spatial resolution
/ Summer
/ Taiga
/ Temperate forests
/ Temperature
/ Tropical forests
/ Winter
2015
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Local cooling and warming effects of forests based on satellite observations
by
Kalnay, Eugenia
, Li, Shuangcheng
, Mu, Qiaozhen
, Zhao, Maosheng
, Motesharrei, Safa
, Li, Yan
in
704/106/47
/ 704/158/2454
/ Albedo
/ Boreal forests
/ Climate
/ Climate Change
/ Climate effects
/ Climate models
/ Cooling
/ Cooling effects
/ Data acquisition
/ Data processing
/ Environmental Policy
/ Evapotranspiration
/ Forest management
/ Forestry
/ Forests
/ Humanities and Social Sciences
/ Models, Theoretical
/ multidisciplinary
/ Rainfall
/ Rainforest
/ Satellite observation
/ Science
/ Science (multidisciplinary)
/ Spacecraft
/ Spatial discrimination
/ Spatial resolution
/ Summer
/ Taiga
/ Temperate forests
/ Temperature
/ Tropical forests
/ Winter
2015
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Local cooling and warming effects of forests based on satellite observations
Journal Article
Local cooling and warming effects of forests based on satellite observations
2015
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Overview
The biophysical effects of forests on climate have been extensively studied with climate models. However, models cannot accurately reproduce local climate effects due to their coarse spatial resolution and uncertainties, and field observations are valuable but often insufficient due to their limited coverage. Here we present new evidence acquired from global satellite data to analyse the biophysical effects of forests on local climate. Results show that tropical forests have a strong cooling effect throughout the year; temperate forests show moderate cooling in summer and moderate warming in winter with net cooling annually; and boreal forests have strong warming in winter and moderate cooling in summer with net warming annually. The spatiotemporal cooling or warming effects are mainly driven by the two competing biophysical effects, evapotranspiration and albedo, which in turn are strongly influenced by rainfall and snow. Implications of our satellite-based study could be useful for informing local forestry policies.
Local climatic effects of forests remain poorly understood due to the coarse spatial resolution of models and field observations. Here, the authors use global satellite data to analyse the spatiotemporal cooling or warming effects of tropical, temperate and boreal forests on climate.
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