Hydrological models featuring root water uptake usually do not include compensation mechanisms such that reductions in uptake from dry layers are compensated by an increase in uptake from wetter layers. We developed a physically based root water uptake model with an implicit compensation mechanism. Based on an expression for the matric flux potential (M) as a function of the distance to the root, and assuming a depth-independent value of M at the root surface, uptake per layer is shown to be a function of layer bulk M, root surface M, and a weighting factor that depends on root length density and root radius. Actual transpiration can be calculated from the sum of layer uptake rates. The proposed reduction function (PRF) was built into the S...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Three macroscopic root water uptake models (Molz-Remson, Feddes, and Selim-Iskandar) have been widel...
Hydrological models featuring root water uptake usually do not include compensation mechanisms such ...
The spatiotemporal distribution of root water uptake (RWU) depends on the dynamics of the root distr...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Modeling root water uptake in hydrological models remains challenging given the scale gap between th...
Root water uptake by plants mediates the exchange of water, carbon and energy between land surface a...
The objective of our study was to determine to what extent four root water uptake (RWU) models diffe...
We compared four root water uptake (RWU) models of different complexity that are all embedded in gre...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
How much water can be taken up by roots and how this depends on the root and water distributions in ...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
Many hydrological models including root water uptake (RWU) do not consider the dimension of root sys...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Three macroscopic root water uptake models (Molz-Remson, Feddes, and Selim-Iskandar) have been widel...
Hydrological models featuring root water uptake usually do not include compensation mechanisms such ...
The spatiotemporal distribution of root water uptake (RWU) depends on the dynamics of the root distr...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Modeling root water uptake in hydrological models remains challenging given the scale gap between th...
Root water uptake by plants mediates the exchange of water, carbon and energy between land surface a...
The objective of our study was to determine to what extent four root water uptake (RWU) models diffe...
We compared four root water uptake (RWU) models of different complexity that are all embedded in gre...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
How much water can be taken up by roots and how this depends on the root and water distributions in ...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
Many hydrological models including root water uptake (RWU) do not consider the dimension of root sys...
Soil water potential (SWP) is known to affect plant water status, and even though observations demon...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Three macroscopic root water uptake models (Molz-Remson, Feddes, and Selim-Iskandar) have been widel...