Is it possible to estimate carbon allocation to fine roots from the water demands of the vegetation? We assess this question by applying a root model which is based on optimisation principles. The model uses a new formulation of water uptake by fine roots, which is necessary to explicitly take into account the highly dynamic and non-steady process of water uptake. Its carbon dynamics are driven by maximising the water uptake while keeping maintenance costs at a minimum. We apply the model to a site in northern Germany and check averaged vertical fine root biomass distribution against measured data. The model reproduces the observed values fairly well and the approach seems promising. However, more validation is necessary, especially on the ...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
<div><p>Root biomass distributions have long been used to infer patterns of resource uptake. These p...
© 2014 Elsevier Ltd. We apply a model of root-water uptake to a woodland in Australia to examine the...
Is it possible to estimate carbon allocation to fine roots from the water demands of the vegetation?...
Root water uptake by plants mediates the exchange of water, carbon and energy between land surface a...
Roots play a key role in terrestrial carbon and water cycles, and therefore for the global climate s...
We outline a method of inferring rooting depth from a terrestrial biosphere model by maximising the ...
We outline a method of inferring rooting depth from a Terrestrial Biosphere Model by maximizing the ...
The representation of root activity in models is here confined to considerations of applications ass...
From 30 September to 2 October 1999 a workshop was held in Git-sur-Yvette, France, with the central ...
The main processes determining soil moisture dynamics are infiltration, percolation, evaporation and...
The potential benefits of planting trees have generated significant interest with respect to sequest...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
By extracting bound water from the soil and lifting it to the canopy, root systems of vegetation per...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
<div><p>Root biomass distributions have long been used to infer patterns of resource uptake. These p...
© 2014 Elsevier Ltd. We apply a model of root-water uptake to a woodland in Australia to examine the...
Is it possible to estimate carbon allocation to fine roots from the water demands of the vegetation?...
Root water uptake by plants mediates the exchange of water, carbon and energy between land surface a...
Roots play a key role in terrestrial carbon and water cycles, and therefore for the global climate s...
We outline a method of inferring rooting depth from a terrestrial biosphere model by maximising the ...
We outline a method of inferring rooting depth from a Terrestrial Biosphere Model by maximizing the ...
The representation of root activity in models is here confined to considerations of applications ass...
From 30 September to 2 October 1999 a workshop was held in Git-sur-Yvette, France, with the central ...
The main processes determining soil moisture dynamics are infiltration, percolation, evaporation and...
The potential benefits of planting trees have generated significant interest with respect to sequest...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
By extracting bound water from the soil and lifting it to the canopy, root systems of vegetation per...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
International audienceCompetition for water among multiple tree rooting systems is investigated usin...
<div><p>Root biomass distributions have long been used to infer patterns of resource uptake. These p...
© 2014 Elsevier Ltd. We apply a model of root-water uptake to a woodland in Australia to examine the...