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Blodgett Forest
826-Blodgett Forest
An air relative-humidity-based evapotranspiration model from eddy covariance data
Atqasuk
Audubon Research Ranch
Austin Cary
Blodgett Forest
Bondville
Donaldson
Fort Peck
Goodwin Creek
Harvard Forest EMS Tower (HFR1)
Howland Forest (Main Tower)
Kennedy Space Center (scrub oak)
Metolius New Young Pine
Missouri Ozark Site
Mize
North Carolina Clearcut
Univ. of Mich. Biological Station
Wind River Crane Site
Yan, H.
, &
Shugart H. H.
(2010).
An air relative-humidity-based evapotranspiration model from eddy covariance data
.
Journal of Geophysical Research. 115
(D16),
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Deriving a light use efficiency model from eddy covariance flux data for predicting daily gross primary production across biomes
Austin Cary
Blodgett Forest
Donaldson
Duke Forest Hardwoods
Duke Forest Loblolly Pine
Duke Forest Open Field
Fort Peck
Goodwin Creek
Hesse Forest- Sarrebourg
Howland Forest (Main Tower)
Hyytiala
Lost Creek
Metolius Intermediate Pine
Metolius Old Pine
Metolius Second Young Pine
Morgan Monroe State Forest
Niwot Ridge (LTER NWT1)
Sylvania Wilderness Area
Tharandt- Anchor Station
Tonzi Ranch
UCI 1930
UCI 1964
UCI 1981
Univ. of Mich. Biological Station
Vaira Ranch
Walnut River Watershed
Willow Creek
Yuan, W.
,
Liu S.
,
Zhou G.
,
Zhou G.
,
Tieszen L. L.
,
Baldocchi D.
, et al.
(2007).
Deriving a light use efficiency model from eddy covariance flux data for predicting daily gross primary production across biomes
.
Agricultural and Forest Meteorology. 143
(3-4), 189 - 207.
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Google Scholar
Toward constraining regional-scale fluxes of CO <sub>2</sub> with atmospheric observations over a continent: 2. Analysis of COBRA data using a receptor-oriented framework
Austin Cary
Barrow
Blodgett Forest
Bondville
BOREAS NSA - Old Black Spruce
Duke Forest Loblolly Pine
Harvard Forest EMS Tower (HFR1)
Lethbridge
Metolius Intermediate Pine
Niwot Ridge (LTER NWT1)
Park Falls
Univ. of Mich. Biological Station
Willow Creek
Gerbig, C.
(2003).
Toward constraining regional-scale fluxes of CO
2
with atmospheric observations over a continent: 2. Analysis of COBRA data using a receptor-oriented framework
.
Journal of Geophysical Research. 108
(D24),
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Google Scholar
An operational remote sensing algorithm of land surface evaporation
Blodgett Forest
Bondville
Duke Forest Loblolly Pine
Harvard Forest EMS Tower (HFR1)
Howland Forest (Main Tower)
Little Washita Watershed
Metolius Intermediate Pine
Ponca City
Shidler
Sky Oaks
Walker Branch Watershed
Willow Creek
Nishida, K.
(2003).
An operational remote sensing algorithm of land surface evaporation
.
Journal of Geophysical Research. 108
(D9),
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Google Scholar
Development of a global evapotranspiration algorithm based on MODIS and global meteorology data
Austin Cary
Barrow
Black Hills
Blodgett Forest
Bondville
BOREAS NSA - Old Black Spruce
British Columbia- Campbell River - Mature Forest Site
Donaldson
Duke Forest Hardwoods
Duke Forest Loblolly Pine
Fort Peck
Kennedy Space Center (scrub oak)
Lethbridge
Mize
Niwot Ridge (LTER NWT1)
Tonzi Ranch
Univ. of Mich. Biological Station
Vaira Ranch
Walnut River Watershed
Mu, Q.
,
Heinsch F. A.
,
Zhao M.
, &
Running S. W.
(2007).
Development of a global evapotranspiration algorithm based on MODIS and global meteorology data
.
Remote Sensing of Environment. 111
(4), 519 - 536.
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Satellite-based estimation of surface vapor pressure deficits using MODIS land surface temperature data
Blodgett Forest
Bondville
Fort Peck
Harvard Forest EMS Tower (HFR1)
Lost Creek
Metolius Intermediate Pine
Morgan Monroe State Forest
Niwot Ridge (LTER NWT1)
Tonzi Ranch
Vaira Ranch
Willow Creek
HASHIMOTO, H.
,
DUNGAN J.
,
WHITE M.
,
YANG F.
,
MICHAELIS A.
,
RUNNING S.
, et al.
(2008).
Satellite-based estimation of surface vapor pressure deficits using MODIS land surface temperature data
.
Remote Sensing of Environment. 112
(1), 142 - 155.
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Blodgett Forest Site Gallery
Blodgett Forest
Pictures from the Blodgett Forest FLUXNET tower site.
Identification of a general light use efficiency model for gross primary production
Audubon Research Ranch
Bartlett Experimental Forest
Black Hills
Blodgett Forest
BOREAS NSA - Old Black Spruce
Brasschaat (De Inslag Forest);
Castelporziano
Donaldson
Duke Forest Hardwoods
Duke Forest Loblolly Pine
Flakaliden
Fort Peck
GLEES
Goodwin Creek
Griffin- Aberfeldy-Scotland
Hainich
Harvard Forest EMS Tower (HFR1)
Hesse Forest- Sarrebourg
Howland Forest (East Tower Harvest Site)
Hyytiala
Le Bray (after 6/28/1998)
Lethbridge
Loobos
Metolius First Young Pine
Metolius Intermediate Pine
Missouri Ozark Site
Morgan Monroe State Forest
Neustift/Stubai Valley
Niwot Ridge (LTER NWT1)
Norunda
Oensingen1 grass
Puechabon
Roccarespampani1
Soroe- LilleBogeskov
Sylvania Wilderness Area
Tharandt- Anchor Station
Univ. of Mich. Biological Station
Vaira Ranch
Vielsalm
Walker Branch Watershed
Wetzstein
Willow Creek
Wind River Crane Site
Yatir
Horn, J. E.
, &
Schulz K.
(2011).
Identification of a general light use efficiency model for gross primary production
.
Biogeosciences. 8
(4), 999 - 1021.
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Net ecosystem production in a temperate pine plantation in southeastern Canada
Bayreuth-Waldstein/WeidenBrunnen
Blodgett Forest
Brasschaat (De Inslag Forest);
British Columbia- Campbell River - Mature Forest Site
Duke Forest Open Field
Flakaliden
GLEES
Griffin- Aberfeldy-Scotland
Howland Forest (East Tower Harvest Site)
Loobos
Metolius Intermediate Pine
Metolius Old Pine
Metolius Second Young Pine
Niwot Ridge (LTER NWT1)
Norunda
Ontario- Turkey Point Mature White Pine
Tharandt- Anchor Station
Vielsalm
Wind River Crane Site
ARAIN, M.
, &
RESTREPOCOUPE N.
(2005).
Net ecosystem production in a temperate pine plantation in southeastern Canada
.
Agricultural and Forest Meteorology. 128
(3-4), 223 - 241.
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Partitioning forest carbon fluxes with overstory and understory eddy-covariance measurements: A synthesis based on FLUXNET data
Blodgett Forest
Hesse Forest- Sarrebourg
Hyytiala
Le Bray (after 6/28/1998)
Metolius Eyerly Burn
Sask- SSA Old Aspen
Sask- SSA Old Jack Pine
Tonzi Ranch
Walker Branch Watershed
Wind River Crane Site
MISSON, L.
,
BALDOCCHI D.
,
BLACK T.
,
BLANKEN P.
,
Brunet Y.
,
CURIELYUSTE J.
, et al.
(2007).
Partitioning forest carbon fluxes with overstory and understory eddy-covariance measurements: A synthesis based on FLUXNET data
.
Agricultural and Forest Meteorology. 144
(1-2), 14 - 31.
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