There is a growing interest to extend climate change predictions to smaller, catchment-size scales and identify their implications on hydrological and ecological processes. Small scale processes are, in fact, expected to mediate climate changes, producing local effects and feedbacks that can interact with the principal consequences of the change. This is particularly applicable, when a complex interaction, such as the inter-relationship between the hydrological cycle and vegetation dynamics, is considered. This study presents a blueprint methodology for studying climate change impacts, as inferred from climate models, on eco-hydrological dynamics at the plot and catchment scale.

A blueprint for using climate change predictions in an eco-hydrological study / Enrica Caporali; Simone Fatichi; Valeriy Y. Ivanov. - ELETTRONICO. - H33D:(2009), pp. 0903-0903. (Intervento presentato al convegno 2009 American Geophysical Union Fall Meeting tenutosi a San Francisco, CA USA nel 14-18 December 2009).

A blueprint for using climate change predictions in an eco-hydrological study

CAPORALI, ENRICA;FATICHI, SIMONE;
2009

Abstract

There is a growing interest to extend climate change predictions to smaller, catchment-size scales and identify their implications on hydrological and ecological processes. Small scale processes are, in fact, expected to mediate climate changes, producing local effects and feedbacks that can interact with the principal consequences of the change. This is particularly applicable, when a complex interaction, such as the inter-relationship between the hydrological cycle and vegetation dynamics, is considered. This study presents a blueprint methodology for studying climate change impacts, as inferred from climate models, on eco-hydrological dynamics at the plot and catchment scale.
2009
2009 AGU Fall Meeting
2009 American Geophysical Union Fall Meeting
San Francisco, CA USA
Enrica Caporali; Simone Fatichi; Valeriy Y. Ivanov
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/949146
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