HR: 1340h
AN: B23A-0915 [Abstracts]
TI: Eddy Covariance Measurements of CO2 and Energy Fluxes Above Mountain Grasslands
in the Austrian Alps: Challenges and Results
AU: * Wohlfahrt, G
EM: Georg.Wohlfahrt@uibk.ac.at
AF: University of Innsbruck, Institute of Ecology, Sternwartestr. 15, Innsbruck, 6020, Austria
AU: Hammerle, A
EM: Albin.Hammerle@uibk.ac.at
AF: University of Innsbruck, Institute of Ecology, Sternwartestr. 15, Innsbruck, 6020, Austria
AU: Haslwanter, A
EM: Alois.Haslwanter@uibk.ac.at
AF: University of Innsbruck, Institute of Ecology, Sternwartestr. 15, Innsbruck, 6020, Austria
AU: Bahn, M
EM: Michael.Bahn@uibk.ac.at
AF: University of Innsbruck, Institute of Ecology, Sternwartestr. 15, Innsbruck, 6020, Austria
AU: Tappeiner, U
EM: Ulrike.Tappeiner@uibk.ac.at
AF: University of Innsbruck, Institute of Ecology, Sternwartestr. 15, Innsbruck, 6020, Austria
AU: Cernusca, A
EM: Alexander.Cernusca@uibk.ac.at
AF: University of Innsbruck, Institute of Ecology, Sternwartestr. 15, Innsbruck, 6020, Austria
AB:
Fluxes of CO2 and energy have been measured over several differently managed mountain grasslands in
the Austrian Alps over the past seven years. Here we discuss the challenges associated with the application of
the eddy covariance method in complex mountainous terrain and show how these flux measurements can be
validated using a multiple-constraints approach. It is shown that defensible eddy covariance flux measurements
over low-statured mountain grasslands are possible even in complex terrain as long as the measurement height
is low enough to remain within the shallow equilibrium layer where the wind field exhibits characteristics akin to
level terrain and rigorous quality control is exercised. Differences in ecosystem-atmosphere exchange of
CO2 and energy between sites are related to gradients in land use and climate caused by differences in
elevation. It is shown that elevation-mediated changes in climate, in particular the length of the vegetation period,
and land use, in particular the cutting frequency, have an opposing influence on the carbon cycling of mountain
grasslands, resulting in similar net carbon balances irrespective of elevation.
DE: 0402 Agricultural systems
DE: 0426 Biosphere/atmosphere interactions (0315)
DE: 0428 Carbon cycling (4806)
DE: 0452 Instruments and techniques
DE: 3322 Land/atmosphere interactions (1218, 1631, 1843)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting