Tree water deficit estimated by measuring water-related changes in stem radius (DeltaW) was compared with tree water deficit estimated from the output of a simple, physiologically reasonable model (DeltaW(E)), with soil water potential (Psi(soil)) and atmospheric vapor pressure deficit (VPD) as inputs. Values of DeltaW were determined by monitoring stem radius changes with dendrometers and detrending the results for growth, We followed changes in DeltaW and DeltaW(E) in Pinus sylvestris L. and Quercus pubescens Willd. over 2 years at a dry site (2001-2002; Salgesch, Wallis) and in Picea abies (L.) Karst. for 1 year at a wet site (1998; Davos, Graubuenden) in the Swiss Alps. The seasonal courses of DeltaW in deciduous species and in conifers...
Mechanistic water balance models can be used to predict soil moisture dynamics and drought stress in...
Research Highlights: During drought, reduced soil water availability and increased vapor pressure de...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...
International audienceThis paper presents a daily water balance model where the main aim is to quant...
Temperate forests are expected to be particularly vulnerable to drought and soil drying because they...
The effect of drought on forest water use is often estimated with models, but comprehensive models r...
Temperate forests are expected to be particularly vulnerable to drought and soil drying because they...
Abstract: This modeling study used recent observations at a temperate broad-leaved forest in Central...
To assess how the effects of drought could be better captured in process-based models, this study si...
To assess how the effects of drought could be better captured in process-based models, this study si...
To assess how the effects of drought could be better captured in process-based models, this study si...
Tree water use is a key variable in forest eco-hydrological studies and is often monitored by sap fl...
Tree water use is a key variable in forest eco-hydrological studies and is often monitored by sap fl...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
Dynamics in microclimate and physiological plant traits were studied for Pubescent oak and Scots pin...
Mechanistic water balance models can be used to predict soil moisture dynamics and drought stress in...
Research Highlights: During drought, reduced soil water availability and increased vapor pressure de...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...
International audienceThis paper presents a daily water balance model where the main aim is to quant...
Temperate forests are expected to be particularly vulnerable to drought and soil drying because they...
The effect of drought on forest water use is often estimated with models, but comprehensive models r...
Temperate forests are expected to be particularly vulnerable to drought and soil drying because they...
Abstract: This modeling study used recent observations at a temperate broad-leaved forest in Central...
To assess how the effects of drought could be better captured in process-based models, this study si...
To assess how the effects of drought could be better captured in process-based models, this study si...
To assess how the effects of drought could be better captured in process-based models, this study si...
Tree water use is a key variable in forest eco-hydrological studies and is often monitored by sap fl...
Tree water use is a key variable in forest eco-hydrological studies and is often monitored by sap fl...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
Dynamics in microclimate and physiological plant traits were studied for Pubescent oak and Scots pin...
Mechanistic water balance models can be used to predict soil moisture dynamics and drought stress in...
Research Highlights: During drought, reduced soil water availability and increased vapor pressure de...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...