AbstractAccurate estimates of how soil water stress affects plant transpiration are crucial for reliable land surface model (LSM) predictions. Current LSMs generally use a water stress factor, β, dependent on soil moisture content, θ, that ranges linearly between β=1 for unstressed vegetation and β=0 when wilting point is reached. This paper explores the feasibility of replacing the current approach with equations that use soil water potential as their independent variable, or with a set of equations that involve hydraulic and chemical signaling, thereby ensuring feedbacks between the entire soil–root–xylem–leaf system. A comparison with the original linear θ-based water stress parameterization, and with its improved curvi-linear version, w...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Project Co-ordinators: Dr. Jose Alfonso Gómez Calero (Instituto de Agricultura Sostenible (IAS-CISC)...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...
AbstractAccurate estimates of how soil water stress affects plant transpiration are crucial for reli...
Accurate estimates of how soil water stress affects plant transpiration are crucial for reliable lan...
Accurate estimates of how soil water stress affects plant transpiration are crucial for reliable lan...
Plant transpiration downregulation in the presence of soil water stress is a critical mechanism for ...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
Uncertainty in the representation of vegetation in Earth System Models is a major contributor to the...
In hydrological modeling, both empirical and mechanistic approaches have their own advantages, the f...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
Stomatal regulation and whole plant hydraulic signaling affect water fluxes and stress in plants. La...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
Chapters 1 and 2 identify the aims and objectives of the study, as well as the hypotheses and assump...
Modeling stomatal response to soil drying is of crucial importance for estimating transpiration flux...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Project Co-ordinators: Dr. Jose Alfonso Gómez Calero (Instituto de Agricultura Sostenible (IAS-CISC)...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...
AbstractAccurate estimates of how soil water stress affects plant transpiration are crucial for reli...
Accurate estimates of how soil water stress affects plant transpiration are crucial for reliable lan...
Accurate estimates of how soil water stress affects plant transpiration are crucial for reliable lan...
Plant transpiration downregulation in the presence of soil water stress is a critical mechanism for ...
A detailed representation of plant hydraulic traits and stomatal closure in land surface models (LSM...
Uncertainty in the representation of vegetation in Earth System Models is a major contributor to the...
In hydrological modeling, both empirical and mechanistic approaches have their own advantages, the f...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
Stomatal regulation and whole plant hydraulic signaling affect water fluxes and stress in plants. La...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
Chapters 1 and 2 identify the aims and objectives of the study, as well as the hypotheses and assump...
Modeling stomatal response to soil drying is of crucial importance for estimating transpiration flux...
Crop transpiration depends on resistances in the soil–plant–atmosphere system. We present a new dete...
Project Co-ordinators: Dr. Jose Alfonso Gómez Calero (Instituto de Agricultura Sostenible (IAS-CISC)...
Plant root system can be conceptualized as a network of water saturated porous pipes, at the interfa...