Soil hydraulic conductivity (ksoil) drops significantly in dry soils, resulting in steep soil water potential gradients (ψs) near plant roots during water uptake. Coarse soil grid resolutions in root system scale (RSS) models of root water uptake (RWU) generally do not spatially resolve this gradient in drying soils which can lead to a large overestimation of RWU. To quantify this, we consider a benchmark scenario of RWU from drying soil for which a numerical reference solution is available. We analyze this problem using a finite volume scheme and investigate the impact of grid size on the RSS model results. At dry conditions, the cumulative RWU was overestimated by up to 300% for the coarsest soil grid of 4.0 cm and by 30% for the finest s...
Despite most macroscopic models for root water uptake considering root length density (RLD) to descr...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Limitation of photosynthesis by soil moisture variability is increasingly understood to be a central...
Modeling root water uptake in hydrological models remains challenging given the scale gap between th...
Recent advances in scaling up water flows on root system networks hold promise for improving predict...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
© 2019 A detailed representation of plant hydraulic traits and stomatal closure in land surface mode...
Many hydrological models including root water uptake (RWU) do not consider the dimension of root sys...
We compared four root water uptake (RWU) models of different complexity that are all embedded in gre...
Root water uptake (RWU) affects underground water dynamics, with consequences on plant water availab...
Root water uptake is a major process controlling water balance and accounts for about 60% of global ...
In models of water flow in soil and roots, differences in the soil hydraulic properties of the rhizo...
The objective of our study was to determine to what extent four root water uptake (RWU) models diffe...
Root water uptake is described from the local scale, to the field scale and to the regional and glob...
Despite most macroscopic models for root water uptake considering root length density (RLD) to descr...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Limitation of photosynthesis by soil moisture variability is increasingly understood to be a central...
Modeling root water uptake in hydrological models remains challenging given the scale gap between th...
Recent advances in scaling up water flows on root system networks hold promise for improving predict...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
We studied water uptake variability at the plant scale using a three-dimensional detailed model. Spe...
© 2019 A detailed representation of plant hydraulic traits and stomatal closure in land surface mode...
Many hydrological models including root water uptake (RWU) do not consider the dimension of root sys...
We compared four root water uptake (RWU) models of different complexity that are all embedded in gre...
Root water uptake (RWU) affects underground water dynamics, with consequences on plant water availab...
Root water uptake is a major process controlling water balance and accounts for about 60% of global ...
In models of water flow in soil and roots, differences in the soil hydraulic properties of the rhizo...
The objective of our study was to determine to what extent four root water uptake (RWU) models diffe...
Root water uptake is described from the local scale, to the field scale and to the regional and glob...
Despite most macroscopic models for root water uptake considering root length density (RLD) to descr...
In this paper, we present a stand alone root water uptake model called aRoot, which calculates the s...
Limitation of photosynthesis by soil moisture variability is increasingly understood to be a central...