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Harvard Forest EMS Tower (HFR1)
886-Harvard Forest EMS Tower (HFR1)
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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Estimating parameters in a land-surface model by applying nonlinear inversion to eddy covariance flux measurements from eight FLUXNET sites
Griffin- Aberfeldy-Scotland
Harvard Forest EMS Tower (HFR1)
Hesse Forest- Sarrebourg
Hyytiala
Tonzi Ranch
Tumbarumba
UCI 1930
Walker Branch Watershed
WANG, Y. I. N. G. P. I. N. G.
,
Baldocchi D.
,
Leuning R.
,
Falge E.
, &
Vesala T.
(2007).
Estimating parameters in a land-surface model by applying nonlinear inversion to eddy covariance flux measurements from eight FLUXNET sites
.
Global Change Biology. 13
(3), 652 - 670.
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Remote sensing data assimilation for a prognostic phenology model
Bondville
BOREAS NSA - Old Black Spruce
Castelporziano
Collelongo- Selva Piana
El Saler
Fort Peck
Harvard Forest EMS Tower (HFR1)
Hesse Forest- Sarrebourg
Hyytiala
Kaamanen wetland
Lethbridge
Morgan Monroe State Forest
Niwot Ridge (LTER NWT1)
Santarem-Km67-Primary Forest
Santarem-Km83-Logged Forest
Tharandt- Anchor Station
Tonzi Ranch
Vaira Ranch
Vielsalm
Willow Creek
Wind River Crane Site
Stöckli, R.
,
Rutishauser T.
,
Dragoni D.
,
O'keefe J.
,
Thornton P. E.
,
Jolly M.
, et al.
(2008).
Remote sensing data assimilation for a prognostic phenology model
.
Journal of Geophysical Research. 113
(G4),
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Environmental and biological controls on the seasonal variations in latent heat fluxes derived from flux data for three forest sites
Harvard Forest EMS Tower (HFR1)
Hyytiala
Univ. of Mich. Biological Station
Schulz, K.
(2004).
Environmental and biological controls on the seasonal variations in latent heat fluxes derived from flux data for three forest sites
.
Water Resources Research. 40
(12),
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Evaluation of remote sensing based terrestrial productivity from MODIS using regional tower eddy flux network observations
Barrow
BOREAS NSA - Old Black Spruce
Duke Forest Hardwoods
Harvard Forest EMS Tower (HFR1)
Howland Forest (Main Tower)
Lethbridge
Lost Creek
Metolius Old Pine
Metolius Second Young Pine
Niwot Ridge (LTER NWT1)
Park Falls
Sky Oaks- Old Stand
Sylvania Wilderness Area
Tonzi Ranch
Willow Creek
Heinsch, F. A.
,
Zhao M.
,
Running S. W.
,
Kimball J. S.
,
Nemani R. R.
,
DAVIS K. J.
, et al.
(2006).
Evaluation of remote sensing based terrestrial productivity from MODIS using regional tower eddy flux network observations
.
IEEE Transactions on Geoscience and Remote Sensing. 44
(7), 1908 - 1925.
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FLUXNET and modelling the global carbon cycle
Harvard Forest EMS Tower (HFR1)
Le Bray (after 6/28/1998)
Manaus - ZF2 C14
Ponca City
FRIEND, A. N. D. R. E. W. D.
,
ARNETH A. L. M. U. T.
,
KIANG N. A. N. C. Y. Y.
,
LOMAS M. A. R. K.
,
OGÉE J. É. R. Ô. M. E.
,
RÖDENBECK C. H. R. I. S. T. I. A. N.
, et al.
(2007).
FLUXNET and modelling the global carbon cycle
.
Global Change Biology. 13
(3), 610 - 633.
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Combined Simple Biosphere/Carnegie-Ames-Stanford Approach terrestrial carbon cycle model
BOREAS NSA - Old Black Spruce
Harvard Forest EMS Tower (HFR1)
Howland Forest (Main Tower)
Park Falls
Santarem-Km67-Primary Forest
SCHAEFER, K. E. V. I. N.
,
Collatz J. G.
,
Tans P.
,
Denning S. A.
,
Baker I.
,
Berry J.
, et al.
(2008).
Combined Simple Biosphere/Carnegie-Ames-Stanford Approach terrestrial carbon cycle model
.
Journal of Geophysical Research. 113
(G3),
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An empirical model simulating diurnal and seasonal CO<sub>2</sub> flux for diverse vegetation types and climate conditions
Atqasuk
Audubon Research Ranch
Barrow
Bartlett Experimental Forest
Brookings
Donaldson
Duke Forest Hardwoods
Duke Forest Loblolly Pine
Duke Forest Open Field
Harvard Forest EMS Tower (HFR1)
Howland Forest (Main Tower)
Intermediate hardwood (IHW)
Ivotuk
Kennedy Space Center (scrub oak)
Mature red pine (MRP)
Metolius Intermediate Pine
Missouri Ozark Site
Mixed young jack pine (MYJP)
Park Falls
Santarem-Km67-Primary Forest
Santa Rita Mesquite
UCI 1850
UCI 1930
Walnut River Watershed
Saito, M.
,
Maksyutov S.
,
Hirata R.
, &
Richardson A. D.
(2009).
An empirical model simulating diurnal and seasonal CO
2
flux for diverse vegetation types and climate conditions
.
Biogeosciences. 6
(4), 585 - 599.
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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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Influence of spring phenology on seasonal and annual carbon balance in two contrasting New England forests
Harvard Forest EMS Tower (HFR1)
Howland Forest (Main Tower)
Richardson, A. D.
,
HOLLINGER D. Y.
,
DAIL D. B.
,
Lee J. T.
,
MUNGER J. W.
, &
O'keefe J.
(2009).
Influence of spring phenology on seasonal and annual carbon balance in two contrasting New England forests
.
Tree Physiology. 29
(3), 321 - 331.
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