Energy and water dynamics of a central Amazonian rain forest

Динамика энергетического и водного балансов центральноамазонского дождевого леса
Yadvinder Malhi, E. Pegoraro, Antônio Donato Nobre, M. G. P. Pereira, J. Grace, Alistair D. Culf, R. Clement
2002-09-25

canopy conductanceeddy covarianceenergy and water budgetsevapotranspirationsoil moisture
This paper presents measurements of the energy and water budgets of a tropical rain forest near Manaus, Brazil, in central Amazonia, collected between September 1995 and August 1996. Fluxes of sensible and latent heat were measured using a three‐dimensional eddy covariance system mounted above the forest canopy. Using a new approach to analysis of eddy covariance data, we found that the measured fluxes increased significantly when turbulent transport on timescales of 1 to 4 hours was taken into account. With this new analysis, the measured turbulent fluxes almost balanced the incoming net radiation, giving increased confidence in the accuracy of the measured fluxes. Of the 5.56 GJ m −2 yr −1 of solar radiation supplied over the year, 11% were reflected, 15% were lost as net thermal emission, 27% were transported through sensible heat convection, 46% used in evapotranspiration, and 0.5% were used in net carbon fixation. Total annual evapotranspiration was calculated to be 1123 mm, accounting for 54% of total precipitation. Seasonality was an important influence: limited water availability during the dry season caused evapotranspiration to reduce by 50%. Total canopy conductance was linearly correlated to soil moisture content, with typical midday values ranging between 0.8 mol m −2 s −1 in the wet season and 0.3 mol m −2 s −1 in the dry season. Such seasonal behavior is likely to be prevalent in most tropical forest regions, and correct description of dry‐season evapotranspiration will require accurate modeling of plant and soil hydraulic properties and knowledge of root distributions.
1
A new eddy-covariance analysis incorporating 1–4-hour turbulent transport substantially increased measured fluxes and nearly closed the energy budget.
2
Annual evapotranspiration was 1123 mm, equivalent to 54% of total precipitation in the central Amazonian rainforest.
3
Canopy conductance increased linearly with soil moisture, with typical midday values of 0.8 mol m−2 s−1 during the wet season and 0.3 mol m−2 s−1 during the dry season; modeling requires plant and soil hydraulics and root distributions.
4
Dry-season water limitation reduced evapotranspiration by 50%, demonstrating strong seasonal control of forest water dynamics.
5
The annual solar energy budget allocated 11% to reflection, 15% to net thermal emission, 27% to sensible heat, 46% to evapotranspiration, and 0.5% to net carbon fixation.

Central Amazonian tropical rainforest near Manaus, Brazil

Seasonal energy and water budgets, including evapotranspiration, turbulent heat fluxes, canopy conductance, and their dependence on water availability

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2002-09-25
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Yadvinder Malhi
E. Pegoraro
Antônio Donato Nobre
M. G. P. Pereira
J. Grace
Alistair D. Culf
R. Clement
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