Search results for "Hydraulic conductivity"

showing 5 items of 115 documents

Accuracy of Saturated Soil Hydraulic Conductivity Estimated from Numerically Simulated Single‐Ring Infiltrations

2019

The single-ring pressure infiltrometer (PI) method is widely used to determine saturated soil hydraulic conductivity, K s , directly in the field. The original and still most common way to analyze the data makes use of the steady-state model developed by the Canadian School in the 90s and two (two-ponding-depth, TPD, approach) or more (multiple-ponding-depth, MPD, approach) depths of ponding. The so-called Wu method based on a generalized infiltration equation allows analysis of the transient infiltration data collected by establishing a single ponding depth of water on the infiltration surface. This investigation, making use of simulated infiltration runs for initially unsaturated sand to …

lcsh:GE1-350lcsh:GeologySaturated soil hydraulic conductivityData analysis proceduresMaterials scienceHydraulic conductivitySingle-ring pressure infiltrometerlcsh:QE1-996.5Settore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliSoil ScienceComposite materialRing (chemistry)lcsh:Environmental sciencesVadose Zone Journal
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Artificial Neural Networks for Predicting the Water Retention Curve of Sicilian Agricultural Soils

2018

Modeling soil-water regime and solute transport in the vadose zone is strategic for estimating agricultural productivity and optimizing irrigation water management. Direct measurements of soil hydraulic properties, i.e., the water retention curve and the hydraulic conductivity function, are often expensive and time-consuming, and represent a major obstacle to the application of simulation models. As a result, there is a great interest in developing pedotransfer functions (PTFs) that predict the soil hydraulic properties from more easily measured and/or routinely surveyed soil data, such as particle size distribution, bulk density (&rho

lcsh:Hydraulic engineeringneural networkSoil textureWater retention curvesoil water retention curve0208 environmental biotechnologyGeography Planning and DevelopmentSoil science02 engineering and technologyAquatic ScienceSiltBiochemistryAkaike criterion; Neural network; Soil water retention curve; Van Genuchten function; Biochemistry; Geography Planning and Development; Aquatic Science; Water Science and Technologyvan Genuchten functionlcsh:Water supply for domestic and industrial purposesHydraulic conductivityPedotransfer functionlcsh:TC1-978Settore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliWater Science and TechnologyPlanning and Developmentlcsh:TD201-500GeographySoil organic matter04 agricultural and veterinary sciences020801 environmental engineeringAkaike criterionSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceAkaike information criterionWater
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Root hydraulic conductivity in three self-rooted and grafted table grape cultivars

2012

<p style="text-align: justify;"><strong>Aim</strong>: Root hydraulic conductivity is one of the main factors that control water flow in the soil-plant system and ultimately affect crop irrigation requirements. This work sets out to estimate root water conductivity for three self-rooted or grafted table grape cultivars.</p><p style="text-align: justify;"><strong>Methods and results</strong>: We evaluated root water conductivity of the cultivars ‘Black Magic’, ‘Matilde’ and ‘Victoria’ grafted onto 1103 Paulsen rootstock or self-rooted. Measurements were performed on two-year-old table grapes grown in pots filled with pumice. Root water conductivity wa…

rootsIrrigation1103 PaulsenWater flowTable grapefungilcsh:Sfood and beveragesHorticultureGraftingROOT VITIS VINIFERA HYDRAULIC CONDUCTIVITYlcsh:QK1-989Settore AGR/03 - Arboricoltura Generale E Coltivazioni Arboreelcsh:AgricultureAgronomyHydraulic conductivitylcsh:BotanyShootroot hydraulic conductivityCultivarRootstocksoillesstable grapeFood ScienceMathematicsOENO One
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A simple field method to measure the hydrodynamic properties of soil surface crust

2013

The hydraulic resistance of the surface crust was determined by a combination of two infiltrometric techniques: first, a surface measurement of steady-state infiltration rate is conducted by a mini-disk tension infiltrometer (MDI); then, the surface crust is removed, its thickness is measured, and a ponded infiltration test is performed at the same site. The Beerkan Estimation of Soil Transfer parameters (BEST) method is applied to estimate the hydraulic properties of the underlying soil provided the particlesize distribution and the bulk density are known. Under the assumption of a unit gradient of hydraulic head below the soil crust, the pressure head at the interface crust-soil is derive…

soil surface crust mini disk tension infiltrometer BEST procedureBEST procedure; Mini disk tension infiltrometer; Soil surface crust; Industrial and Manufacturing Engineering; Mechanical Engineering; BioengineeringWater flowMechanical Engineeringlcsh:SBioengineeringCrustInfiltration (HVAC)lcsh:S1-972Industrial and Manufacturing Engineeringlcsh:AgricultureHydraulic headSoil surface crustHydraulic conductivityMini disk tension infiltrometerSoil crustLoamSoil surface crust mini disk tension infiltrometer BEST procedure.InfiltrometerGeotechnical engineeringBEST procedurelcsh:Agriculture (General)MathematicsJournal of Agricultural Engineering
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Alternative analysis of transient infiltration experiment to estimate soil water repellency

2019

The repellency index (RI) defined as the adjusted ratio between soil‐ethanol, Se, and soil‐water, Sw, sorptivities estimated from minidisk infiltrometer experiments has been used instead of the widely used water drop penetration time and molarity of ethanol drop tests to assess soil water repellency. However, sorptivity calculated by the usual early‐time infiltration equation may be overestimated as the effects of gravity and lateral capillary are neglected. With the aim to establish the best applicative procedure to assess RI, different approaches to estimate Se and Sw were compared that make use of both the early‐time infiltration equation (namely, the 1 min, S1, and the short‐time linear…

water drop penetration timerepellency index631 - Agricultura. Agronomía. Maquinaria agrícola. Suelos. Edafología agrícolatwo-term infiltration model0208 environmental biotechnologySoil science04 agricultural and veterinary sciences02 engineering and technologysoil hydraulic conductivityinfiltration020801 environmental engineeringInfiltration (hydrology)two‐term infiltration modelsoil sorptivitySoil water040103 agronomy & agriculturesoil water repellencySettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestali0401 agriculture forestry and fisheriesEnvironmental scienceminidisk infiltrometerWater Science and Technology
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