Competition for water among multiple tree rooting systems is investigated using a soil-plant model that accounts for soil moisture dynamics and root water uptake (RWU), whole plant transpiration, and leaf-level photosynthesis. The model is based on a numerical solution to the 3D Richards equation modified to account for a 3D RWU, trunk xylem, and stomatal conductances. The stomatal conductance is determined by combining a conventional biochemical demand formulation for photosynthesis with an optimization hypothesis that selects stomatal aperture so as to maximize carbon gain for a given water loss. Model results compare well with measurements of soil moisture throughout the rooting zone, of total sap flow in the trunk xylem, as well as of l...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
International audienceIt is generally accepted that resource availability shapes the structure and f...
International audienceIt is generally accepted that resource availability shapes the structure and f...
International audienceIt is generally accepted that resource availability shapes the structure and f...
BACKGROUND AND AIMS: Improved modelling of carbon assimilation and plant growth to low soil moisture...
Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture...
Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture...
The plasticity of root water uptake determines the maintenance of transpiration during periods of wa...
Background and Motivation: Hydrological models mainly rely on empirical functions to describe rootwa...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
International audienceIt is generally accepted that resource availability shapes the structure and f...
International audienceIt is generally accepted that resource availability shapes the structure and f...
International audienceIt is generally accepted that resource availability shapes the structure and f...
BACKGROUND AND AIMS: Improved modelling of carbon assimilation and plant growth to low soil moisture...
Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture...
Background and Aims: Improved modelling of carbon assimilation and plant growth to low soil moisture...
The plasticity of root water uptake determines the maintenance of transpiration during periods of wa...
Background and Motivation: Hydrological models mainly rely on empirical functions to describe rootwa...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...
International audience• Background and Aims Improved modelling of carbon assimilation and plant grow...