Many environmental and agricultural challenges rely on the proper understanding of water flow and solute transport in soils, for example the carbon cycle, crop growth, irrigation scheduling or fate of pollutants in subsoil. Current modeling approaches typically simulate plant uptake via empirical approaches, which neglect the three-dimensional (3D) root architecture. Yet, nowadays 3D soil-root water and solute models on plant-scale exist, which can be used for assessing the impact of root architecture and root and soil hydraulic resistances on the root uptake pattern and solute transport and water flow in soil.In this thesis, we used a numerical model, which offers the possibility to describe soil and root interaction processes in a mechani...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
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...
Many environmental and agricultural challenges rely on the proper understanding of water ow and solu...
Plants take up water from the root zone and thus affect the three-dimensional water flow field and s...
Plants take up water from the root zone and thus affect the three-dimensional water flow field and s...
Plant transpiration is an important component of the hydrological cycle. Through root water uptake, ...
The R-SWMS model that couples water flow in the root system with three-dimensional water flow and so...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
To understand how the uptake of water by roots locally affects and is affected by the soil water dis...
Water transport from soil to root, driven by the plant transpiration, is an important component of t...
Water flow from soil to root is driven by the plant transpiration and an important component of the ...
3D models of root growth, architecture and function are evolving as they become important tools that...
Plant roots play a crucial role in several key processes in soils. Besides their impact on biogeoche...
Understanding the distribution and fate of solutes in the soil-plant continuum is of interest for re...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
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...
Many environmental and agricultural challenges rely on the proper understanding of water ow and solu...
Plants take up water from the root zone and thus affect the three-dimensional water flow field and s...
Plants take up water from the root zone and thus affect the three-dimensional water flow field and s...
Plant transpiration is an important component of the hydrological cycle. Through root water uptake, ...
The R-SWMS model that couples water flow in the root system with three-dimensional water flow and so...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
To understand how the uptake of water by roots locally affects and is affected by the soil water dis...
Water transport from soil to root, driven by the plant transpiration, is an important component of t...
Water flow from soil to root is driven by the plant transpiration and an important component of the ...
3D models of root growth, architecture and function are evolving as they become important tools that...
Plant roots play a crucial role in several key processes in soils. Besides their impact on biogeoche...
Understanding the distribution and fate of solutes in the soil-plant continuum is of interest for re...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
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...