International audiencetudying soil hydrological processes requires the determination of soil hydraulic parameters whose assessment using traditional methods is expensive and time-consuming. A specific method, Beerkan estimation of soil transfer parameters referred to as BEST was developed to facilitate the determination of both the water retention curve, {theta}(h), and the hydraulic conductivity curve, K({theta}), defined by their shape and scale parameters. BEST estimates shape parameters from particle-size distribution analysis and scale parameters from infiltration experiments at null pressure head. Saturated water content is measured directly at the end of infiltration. Hydraulic conductivity and water pressure scale parameters are cal...
Field-saturated soil hydraulic conductivity, Kfs, is highly variable. Therefore, interpreting and si...
Interpreting and simulating hydrological processes need a large number of field saturated soil hydra...
Single-ring infiltration experiments carried out in the field, such as the Beerkan runs, allow easy ...
International audiencetudying soil hydrological processes requires the determination of soil hydraul...
[Departement_IRSTEA]RE [TR1_IRSTEA]RIE / TRANSFEAU [TR2_IRSTEA]RIE / PHYLEAUInternational audienceSt...
Theories and models used in soil hydrological sciences rely on the knowledge of the spatially and te...
International audienceSoil hydraulic characterization is crucial to describe the retention and trans...
The Beerkan Estimation of Soil Transfer parameters (BEST) procedure is attractive for a simple soil ...
The increasing interest in the Beerkan Estimation of Soil Transfer parameters (BEST) procedure of so...
Establishing the ability of the Beerkan Estimation of Soil Transfer parameters (BEST) procedure to r...
International audienceWater movement in soil can be described accurately at the local scale, provide...
International audienceAbstract The determination of soil hydraulic properties is important in severa...
It has recently been proposed to couple the Beerkan method with the Beerkan Estimation of Soil Tra...
The macroscopic capillary length, λc, is a fundamental soil parameter expressing the relative import...
Field-saturated soil hydraulic conductivity, Kfs, is highly variable. Therefore, interpreting and si...
Interpreting and simulating hydrological processes need a large number of field saturated soil hydra...
Single-ring infiltration experiments carried out in the field, such as the Beerkan runs, allow easy ...
International audiencetudying soil hydrological processes requires the determination of soil hydraul...
[Departement_IRSTEA]RE [TR1_IRSTEA]RIE / TRANSFEAU [TR2_IRSTEA]RIE / PHYLEAUInternational audienceSt...
Theories and models used in soil hydrological sciences rely on the knowledge of the spatially and te...
International audienceSoil hydraulic characterization is crucial to describe the retention and trans...
The Beerkan Estimation of Soil Transfer parameters (BEST) procedure is attractive for a simple soil ...
The increasing interest in the Beerkan Estimation of Soil Transfer parameters (BEST) procedure of so...
Establishing the ability of the Beerkan Estimation of Soil Transfer parameters (BEST) procedure to r...
International audienceWater movement in soil can be described accurately at the local scale, provide...
International audienceAbstract The determination of soil hydraulic properties is important in severa...
It has recently been proposed to couple the Beerkan method with the Beerkan Estimation of Soil Tra...
The macroscopic capillary length, λc, is a fundamental soil parameter expressing the relative import...
Field-saturated soil hydraulic conductivity, Kfs, is highly variable. Therefore, interpreting and si...
Interpreting and simulating hydrological processes need a large number of field saturated soil hydra...
Single-ring infiltration experiments carried out in the field, such as the Beerkan runs, allow easy ...