Transpiration, a process by which plants extract water from soil and transmit it to the atmosphere, is a vital (yet least quantified) component of the hydrological cycle. We propose a root-scale model of water uptake, which is based on first principles, i.e. employs the generally accepted Richards equation to describe water flow in partially saturated porous media (both in a root and the ambient soil) and makes no assumptions about the kinematic structure of flow in a root-soil continuum. Using the Gardner (exponential) constitutive relation to represent the relative hydraulic conductivities in the Richards equations and treating the root as a cylinder, we use a matched asymptotic expansion technique to derive approximate solutions for tr...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
Plant water uptake from soil is an important component of terrestrial water cycle with strong links ...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
Transpiration, a process by which plants extract water from soil and transmit it to the atmosphere, ...
Transpiration, a process by which plants extract water from soil and transmit it to the atmosphere, ...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
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...
Abstract A one-dimensional approximate analytical model, which preserves the main features of soil-c...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
Plant water uptake from soil is an important component of terrestrial water cycle with strong links ...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...
Transpiration, a process by which plants extract water from soil and transmit it to the atmosphere, ...
Transpiration, a process by which plants extract water from soil and transmit it to the atmosphere, ...
The process description of plant transpiration and soil water uptake in macroscopic root water uptak...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
Uptake of water by plant roots can be considered at two different Darcian scales, referred to as the...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
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...
Abstract A one-dimensional approximate analytical model, which preserves the main features of soil-c...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
The estimation of root water uptake and water flow in plants is crucial to quantify transpiration an...
Plant water uptake from soil is an important component of terrestrial water cycle with strong links ...
AbstractSoil water uptake by plant roots results from the complex interplay between plant and soil w...