International audienceThe Budyko curve describes the patterns observed between between climate, evapotranspiration and run-off and has proven to be a useful model for predicting catchment energy and water balances. In this paper we review the Budyko curve's underlying framework and, based on the literature, present an argument for why it is important to include vegetation dynamics into the framework for some purposes. The Budyko framework assumes catchments are at steady-state and are driven by the macro-climate, two conditions dependent on the scales of application, such that the framework's reliability is greatest when applied using long-term averages (?1 year) and to large catchments (>10 000 km2). At these scales previous experience has...
Society is facing growing environmental problems that require new research efforts to understand the...
Within the Budyko framework, the controlling parameter (<i>ω</i> in the Fu equation) is widely consi...
The prediction of long term water balance components is not a trivial issue, even when empirical Bud...
The Budyko curve describes the patterns observed between between climate, evapotranspiration and run...
International audienceThe Budyko curve describes the relationship between climate, evapotranspiratio...
The Budyko curve describes the patterns observed between between climate, evapotranspiration and run...
The Budyko-framework is widely used to assess the water balance of catchments, with large catchments...
The Budyko curve is an empirical relation among evapotranspiration, potential evapotranspiration and...
Due to its role in intercepting and evaporating water, vegetation is a key medium through which catc...
This study examines whether the incorporation of dynamic, remotely sensed vegetation information int...
© 2017 Dr. Daniel MetzenThe Budyko framework for understanding how precipitation (P) is partitioned ...
Vegetation serves as a key element in the land-atmospheric system, and changes in vegetation can imp...
Research findings concerning the main processes influencing water resources differ substantially, an...
The interaction between vegetation and hydrology is complex and varies dynamically at both spatial a...
Thesis by publication.Includes bibliographical references.1. Introduction -- 2. A worldwide analysis...
Society is facing growing environmental problems that require new research efforts to understand the...
Within the Budyko framework, the controlling parameter (<i>ω</i> in the Fu equation) is widely consi...
The prediction of long term water balance components is not a trivial issue, even when empirical Bud...
The Budyko curve describes the patterns observed between between climate, evapotranspiration and run...
International audienceThe Budyko curve describes the relationship between climate, evapotranspiratio...
The Budyko curve describes the patterns observed between between climate, evapotranspiration and run...
The Budyko-framework is widely used to assess the water balance of catchments, with large catchments...
The Budyko curve is an empirical relation among evapotranspiration, potential evapotranspiration and...
Due to its role in intercepting and evaporating water, vegetation is a key medium through which catc...
This study examines whether the incorporation of dynamic, remotely sensed vegetation information int...
© 2017 Dr. Daniel MetzenThe Budyko framework for understanding how precipitation (P) is partitioned ...
Vegetation serves as a key element in the land-atmospheric system, and changes in vegetation can imp...
Research findings concerning the main processes influencing water resources differ substantially, an...
The interaction between vegetation and hydrology is complex and varies dynamically at both spatial a...
Thesis by publication.Includes bibliographical references.1. Introduction -- 2. A worldwide analysis...
Society is facing growing environmental problems that require new research efforts to understand the...
Within the Budyko framework, the controlling parameter (<i>ω</i> in the Fu equation) is widely consi...
The prediction of long term water balance components is not a trivial issue, even when empirical Bud...