We present a mathematical model that describes the movement of water and solutes in a ridge and furrow geometry. We focus on the effects of two physical processes: root water uptake and pond formation in the furrows. Special attention is paid to the physical description of ponding as an effect of transient rain events. We focus on phenomena taking place in the furrow cross section, not on the drainage along the furrow. The resulting model comprises of a coupled system of partial and ordinary differential equations that describe the mathematical interplay between solute transport, water movement and furrow pond depth. The system of equations is solved numerically using finite element techniques. We conducted numerical simulations to determin...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
This thesis deals with the mathematical modelling of nutrient uptake by plant roots. It starts with ...
Plant transpiration is an important component of the hydrological cycle. Through root water uptake, ...
This thesis deals with multiscale mathematical modelling of water and solute movement in soil system...
For optimal water and fertilizer management under furrow irrigation, it is important to understand t...
For optimal water and fertilizer management under furrow irrigation, it is important to understand t...
The water uptake by roots of plants is examined for an ideal situation, with an approximation that r...
For many years, the rhizosphere, which is the zone of soil in the vicinity of the roots and which is...
Abstract A one-dimensional approximate analytical model, which preserves the main features of soil-c...
A physically based model was developed to simulate changes in plant water use and soil water distrib...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
none4siThe narrow region of soil around roots, the so-called rhizosphere, defers in its hydraulic pr...
Plants take up water from the root zone and thus affect the three-dimensional water flow field and s...
This thesis deals with the mathematical modelling of nutrient uptake by plant roots. It starts with ...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
This thesis deals with the mathematical modelling of nutrient uptake by plant roots. It starts with ...
Plant transpiration is an important component of the hydrological cycle. Through root water uptake, ...
This thesis deals with multiscale mathematical modelling of water and solute movement in soil system...
For optimal water and fertilizer management under furrow irrigation, it is important to understand t...
For optimal water and fertilizer management under furrow irrigation, it is important to understand t...
The water uptake by roots of plants is examined for an ideal situation, with an approximation that r...
For many years, the rhizosphere, which is the zone of soil in the vicinity of the roots and which is...
Abstract A one-dimensional approximate analytical model, which preserves the main features of soil-c...
A physically based model was developed to simulate changes in plant water use and soil water distrib...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
none4siThe narrow region of soil around roots, the so-called rhizosphere, defers in its hydraulic pr...
Plants take up water from the root zone and thus affect the three-dimensional water flow field and s...
This thesis deals with the mathematical modelling of nutrient uptake by plant roots. It starts with ...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
This thesis deals with the mathematical modelling of nutrient uptake by plant roots. It starts with ...
Plant transpiration is an important component of the hydrological cycle. Through root water uptake, ...