Modelling changes in grassland hydrological cycling along an elevational gradient in the Alps

Author:

Della Chiesa S.1,Bertoldi G.1,Niedrist G.1,Obojes N.1,Endrizzi S.2,Albertson J. D.3,Wohlfahrt G.4,Hörtnagl L.4,Tappeiner U.14

Affiliation:

1. Institute for Alpine Environment; EURAC Research; Bolzano Italy

2. Department of Geography; University of Zurich; Zurich Switzerland

3. Department of Civil and Environmental Engineering, Pratt School of Engineering; Duke University; Durham NC USA

4. Institute of Ecology; University of Innsbruck; Innsbruck Austria

Funder

Provincia Autonoma di Bolzano - Alto Adige

Publisher

Wiley

Subject

Earth-Surface Processes,Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference106 articles.

1. The role of maintenance respiration in plant growth, Plant Cell;Amthor;Environ,1984

2. Implications of global climate change for snowmelt hydrology in the twenty-first century;Adam;Hydrological Processes,2009

3. Modeling vegetation as a dynamic component in soil-vegetation-atmosphere transfer schemes and hydrological models;Arora;Reviews of Geophysics,2002

4. Estimates of the annual net carbon and water exchange of forests: the EUROFLUX methodology;Aubinet;Advances in Ecological Research,2000

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