HR: 1340h
AN: H13A-0969 [Abstracts]
TI: TERENO – A new Network of Terrestrial Observatories for Environmental Research
AU: Priesack, E
EM: priesack@gsf.de
AF: Institute of Soil Ecology,
Forschungszentrum fuer Umwelt und Gesundheit, Ingolstädter Landstr., Neuherberg, 85764, Germany
AU: * Bogena, H R
EM: h.bogena@fz-juelich.de
AF: Agrosphere Institute, Forschungszentrum Juelich, Leo Brandt Str., Juelich, NRW 52425,
Germany
AU: Haschberger, P
EM: Peter.Haschberger@dlr.de
AF: Remote Sensing Technology Institute, German Aerospace Center, Oberpfaffenhofen,
Wessling, 82234, Germany
AU: Dietrich, P
EM: peter.dietrich@ufz.de
AF: Helmholz-Zentrum fuer Umweltforschung, Permoserstr. 15, Leipzig, 04318, Germany
AU: Schmid, H P
EM: hape.schmid@imk.fzk.de
AF: Atmospheric Environmental Research Division,
Forschungszentrum Karlsruhe, Kreuzeckbahnstr. 19, Garmisch, 82467, Germany
AU: Schulz, K
EM: karsten.schulz@ufz.de
AF: Helmholz-Zentrum fuer Umweltforschung, Permoserstr. 15, Leipzig, 04318, Germany
AU: Vereecken, H
EM: h.vereecken@fz-juelich.de
AF: Agrosphere Institute, Forschungszentrum Juelich, Leo Brandt Str., Juelich, NRW 52425,
Germany
AB:
In order to address the challenges of global change, interdisciplinary research in terrestrial environmental
science is of great importance. Several environmental research networks have already been established in order
to monitor, analyse and predict the impact of global change on different compartments and/or matter cycles of the
environment. Typically these environmental research networks have focused on specific research questions, and
compartments, such as CarboEurope, FLUXNET and ILTER.
The infrastructure activity TERENO (Terrestrial Environmental Observatoria) aims the establishment of a network
of terrestrial observatories, defined as a system consisting of the subsurface environment, the land surface
including the biosphere, the lower atmosphere and the anthroposphere. Hydrological units will be used as the
basic scaling units in a hierarchy of evolving scales and structures ranging from the local scale to the regional
scale for multi-disciplinary process studies. Although terrestrial systems are extremely complex, the terrestrial
component in most process-based climate and biosphere models is typically represented in a very conceptual
and often rudimentary way. Remedying this deficiency is therefore one of the most important challenges in
environmental and terrestrial research, and we suggest that terrestrial observatories could be an important step
towards a new quality in environmental and terrestrial research. For the first phase three terrestrial observatories
in Germany have been identified: the Lower Rhine Basin, the metropolitan area Leipzig-Halle, and the Northern
pre-Alps including the long-term research stations Hoeglwald and Scheyern.
The concept of TERENO is illustrated by the Lower Rhine Basin. A monitoring concept for the Rur catchment -the
largest catchment in the observatory- will be described that is capable of measuring the spatial-temporal
variability of the main hydrological processes and interactions as well as the varying residence times of the
terrestrial water stores. More detailed measurements and characterisation of smaller, focal catchments will be
embedded within progressively larger catchments, allowing the critical evaluation and development of hydrologic
scaling strategies. Specific attention will be given to install novel wireless sensor technology and
hydrogeophysical measurement techniques combined with remote sensing methods (e.g. precipitation radars
and airborne remote sensing platforms).
UR: http://www.fz-
juelich.de/icg/icg-4/index.php?index=768
DE: 1804 Catchment
DE: 1807 Climate impacts
DE: 1839 Hydrologic scaling
DE: 1848 Monitoring networks
DE: 1895 Instruments and techniques: monitoring
SC: Hydrology [H]
MN: 2007 Fall Meeting