FLUXNET: A New Tool to Study the Temporal and Spatial Variability of Ecosystem–Scale Carbon Dioxide, Water Vapor, and Energy Flux Densities
FLUXNET: новый инструмент для изучения временной и пространственной изменчивости плотности потоков углекислого газа, водяного пара и энергии на уровне экосистем
2001-11-01
SCID: 54.1/mww4xg6w
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FLUXNETcarbon and water balancesecosystem carbon fluxesmicrometeorological flux measurementssoil–plant–atmosphere models
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Abstract (AI)
FLUXNET is a global network of micrometeorological flux measurement sites that measure the exchanges of carbon dioxide, water vapor, and energy between the biosphere and atmosphere. At present over 140 sites are operating on a long-term and continuous basis. Vegetation under study includes temperate conifer and broadleaved (deciduous and evergreen) forests, tropical and boreal forests, crops, grasslands, chaparral, wetlands, and tundra. Sites exist on five continents and their latitudinal distribution ranges from 70°N to 30°S. FLUXNET has several primary functions. First, it provides infrastructure for compiling, archiving, and distributing carbon, water, and energy flux measurement, and meteorological, plant, and soil data to the science community. (Data and site information are available online at the FLUXNET Web site, http://www-eosdis.ornl.gov/FLUXNET/.) Second, the project supports calibration and flux intercomparison activities. This activity ensures that data from the regional networks are intercomparable. And third, FLUXNET supports the synthesis, discussion, and communication of ideas and data by supporting project scientists, workshops, and visiting scientists. The overarching goal is to provide information for validating computations of net primary productivity, evaporation, and energy absorption that are being generated by sensors mounted on the NASA Terra satellite. Data being compiled by FLUXNET are being used to quantify and compare magnitudes and dynamics of annual ecosystem carbon and water balances, to quantify the response of stand-scale carbon dioxide and water vapor flux densities to controlling biotic and abiotic factors, and to validate a hierarchy of soil–plant–atmosphere trace gas exchange models. Findings so far include 1) net CO2 exchange of temperate broadleaved forests increases by about 5.7 g C m−2 day−1 for each additional day that the growing season is extended; 2) the sensitivity of net ecosystem CO2 exchange to sunlight doubles if the sky is cloudy rather than clear; 3) the spectrum of CO2 flux density exhibits peaks at timescales of days, weeks, and years, and a spectral gap exists at the month timescale; 4) the optimal temperature of net CO2 exchange varies with mean summer temperature; and 5) stand age affects carbon dioxide and water vapor flux densities.
Key Findings
1
Compiled measurements enable comparisons of annual ecosystem carbon and water balances and assessment of biotic and abiotic controls on stand-scale CO2 and water-vapor fluxes.
2
FLUXNET data support validation of NASA Terra satellite estimates of net primary productivity, evaporation, and energy absorption, as well as testing soil–plant–atmosphere exchange models.
3
FLUXNET operates over 140 long-term sites across five continents and 70°N–30°S, covering diverse ecosystems and measuring carbon, water, and energy fluxes.
4
Net CO2 exchange in temperate broadleaved forests increases by approximately 5.7 g C m−2 day−1 for each additional day of growing-season extension; the abstract also reports doubled sunlight sensitivity but truncates the associated finding.
5
The network provides infrastructure for archiving and distributing flux, meteorological, vegetation, and soil data, while supporting calibration and intercomparison across regional networks.
Research Object
FLUXNET global network of micrometeorological flux measurement sites
Research Subject
The spatial and temporal variability, magnitudes, dynamics, and biotic and abiotic controls of ecosystem carbon, water, and energy flux densities
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2001-11-01
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