À propos de cet article

Citez

Agnese, C., Bagarello, V., Baiamonte, G., Iovino, M., 2011. Comparing physical quality of forest and pasture soils in a Sicilian watershed. Soil Sci. Soc. Am. J., 75, 1958–1970.10.2136/sssaj2011.0044 Search in Google Scholar

Aiello, R., Bagarello, V., Barbagallo, S., Consoli, S., Di Prima, S., Giordano, G., Iovino, M., 2014. An assessment of the Beerkan method for determining the hydraulic properties of a sandy loam soil. Geoderma, 235–236, 300–307.10.1016/j.geoderma.2014.07.024 Search in Google Scholar

Alagna, V., Bagarello, V., Di Prima, S., Giordano, G., Iovino, M., 2013. A simple field method to measure the hydrodynamic properties of soil surface crust. J. Agric. Eng., 44, 74–79.10.4081/jae.2013.255 Search in Google Scholar

Alagna, V., Bagarello, V., Di Prima, S., Iovino, M., 2016. Determining hydraulic properties of a loam soil by alternative infiltrometer techniques. Hydrol. Process., 30, 263–275.10.1002/hyp.10607 Search in Google Scholar

Alagna, V., Bagarello, V., Di Prima, S., Guaitoli, F., Iovino, M., Keesstra, S., Cerdà, A., 2019. Using Beerkan experiments to estimate hydraulic conductivity of a crusted loamy soil in a Mediterranean vineyard. J. Hydrol. Hydromech., 67, 2, 1–10.10.2478/johh-2018-0023 Search in Google Scholar

Angulo-Jaramillo, R., Bagarello, V., Iovino, M., Lassabatere, L., 2016. Infiltration Measurements for Soil Hydraulic Characterization. Springer International Publishing, Switzerland (ISBN 978-3-319-31786-1, 978-3-319-31788-5 (eBook) 386 pp.). http://dx.doi.org/10.1007/978-3-319-31788-510.1007/978-3-319-31788-5 Search in Google Scholar

Angulo-Jaramillo, R., Bagarello, V., Di Prima, S., Gosset, A., Iovino, M., Lassabatere, L., 2019. Beerkan Estimation of Soil Transfer parameters (BEST) across soils and scales. J. Hydrol., 576, 239–261. https://doi.org/10.1016/j.jhydrol.2019.06.00710.1016/j.jhydrol.2019.06.007 Search in Google Scholar

Armenise, E., Simmons, R.W., Ahn, S., Garbout, A., Doerr, S.H., Mooney, S.J., et al., 2018. Soil seal development under simulated rainfall: Structural, physical and hydrological dynamics. J. Hydrol., 556, 211–219.10.1016/j.jhydrol.2017.10.073576106329332951 Search in Google Scholar

Assouline, S., Mualem, Y., 2002. Infiltration during soil sealing: the effect of areal het- erogeneity of soil hydraulic properties. Water Resour. Res. 38, 1286.10.1029/2001WR001168 Search in Google Scholar

Azam, M.G., Zoebisch, M.A., Wickramarachchi, K.S., 2008. Effects of cropping systems on selected soil structural properties and crop yields in the Lam phra phloeng Watershed-Northeast Thailand. Journal of Agronomy, 7, 56–62.10.3923/ja.2008.56.62 Search in Google Scholar

Azam, M. G., Zoebisch, M.A., Wickramarachchi, K.S., Ranamukarachchi, S.L., 2009. Site-specific soil hydraulic quality index to describe the essential conditions for the optimum soil water regime. Can. J. Soil Sci., 89, 645–656.10.4141/CJSS08089 Search in Google Scholar

Bagarello, V., Sgroi, A., 2007. Using the simplified falling head technique to detect temporal changes in field-saturated hydraulic conductivity at the surface of a sandy loam soil. Soil and Till. Res., 94, 283–294.10.1016/j.still.2006.08.001 Search in Google Scholar

Bagarello, V., Iovino, M., Elrick, D.E., 2004. A simplified falling-head technique for rapid determination of field-saturated hydraulic conductivity. Soil Sci. Soc. Am. J., 68, 66–73.10.2136/sssaj2004.6600 Search in Google Scholar

Bagarello, V., Elrick, D.E., Iovino, M., Sgroi, A., 2006. A laboratory analysis of falling head infiltration procedures for estimating the hydraulic conductivity of soils. Geoderma, 135, 322–334.10.1016/j.geoderma.2005.12.008 Search in Google Scholar

Bagarello, V., Castellini, M., Iovino, M., Sgroi, A., 2010a. Testing the concentric-disk tension infiltrometer for field measurements of soil hydraulic conductivity. Geoderma 158, 427–435.10.1016/j.geoderma.2010.06.018 Search in Google Scholar

Bagarello, V., Di Stefano, C., Ferro, V., Iovino, M., Sgroi, A., 2010b. Physical and hydraulic characterization of a clay soil at the plot scale. J. Hydrol., 387, 54–64.10.1016/j.jhydrol.2010.03.029 Search in Google Scholar

Bagarello, V., Di Prima, S., Iovino, M., Provenzano, G., Sgroi, A., 2011. Testing different approaches to characterize Burundian soils by the BEST procedure. Geoderma, 162, 141–150.10.1016/j.geoderma.2011.01.014 Search in Google Scholar

Bagarello, V., D’Asaro, F., Iovino, M., 2012. A field assessment of the Simplified Falling Head technique to measure the saturated soil hydraulic conductivity. Geoderma, 187–188, 49–58.10.1016/j.geoderma.2012.04.008 Search in Google Scholar

Bagarello, V., Di Stefano, C., Iovino, M., Sgroi, A., 2013a. Using a transient infiltrometric technique for intensively sampling field-saturated hydraulic conductivity of a clay soil in two runoff plots. Hydrol. Process., 27, 3415–3423.10.1002/hyp.9448 Search in Google Scholar

Bagarello, V., Castellini, M., Di Prima, S., Giordano, G., Iovino, M., 2013b. Testing a simplified approach to determine field saturated soil hydraulic conductivity. Procedia Environmental Sciences 19, 599–608.10.1016/j.proenv.2013.06.068 Search in Google Scholar

Bagarello, V., Di Prima, S., Iovino, M., Provenzano, G., 2014a. Estimating field-saturated soil hydraulic conductivity by a simplified Beerkan infiltration experiment. Hydrol. Process., 28, 1095–1103.10.1002/hyp.9649 Search in Google Scholar

Bagarello, V., Castellini, M., Di Prima, S., Iovino, M., 2014b. Soil hydraulic properties determined by infiltration experiments and different heights of water pouring. Geoderma, 213, 492–501.10.1016/j.geoderma.2013.08.032 Search in Google Scholar

Bagarello, V., Baiamonte, G., Castellini, M., Di Prima, S., Iovino, M., 2014c. A comparison between the single ring pressure infiltrometer and simplified falling head techniques. Hydrol. Process., 28, 4843–4853.10.1002/hyp.9980 Search in Google Scholar

Bagarello, V., Di Prima, S., Giordano, G., Iovino, M., 2014d. A test of the Beerkan Estimation of Soil Transfer parameters (BEST) procedure. Geoderma, 221–222, 20–27.10.1016/j.geoderma.2014.01.017 Search in Google Scholar

Bagarello, V., Di Prima, S., Iovino, M., 2014e. Comparing alternative algorithms to analyze the Beerkan infiltration experiment. Soil Sci. Soc. Am. J., 78, 3, 724.10.2136/sssaj2013.06.0231 Search in Google Scholar

Bagarello, V., Di Prima, S., Iovino, M., 2017a. Estimating saturated soil hydraulic conductivity by the near steady-state phase of a Beerkan infiltration test. Geoderma, 303, 70–77.10.1016/j.geoderma.2017.04.030 Search in Google Scholar

Bagarello, V., Santis, A.D., Giordano, G., Iovino, M., 2017b. Source shape and data analysis procedure effects on hydraulic conductivity of a sandy-loam soil determined by ponding infiltration runs. J. Agric. Eng., 48, 71–80.10.4081/jae.2017.597 Search in Google Scholar

Bagarello, V., Cecere, N., Di Prima, S., Giordano, G., Iovino, M., 2017c. Height of water pouring effects on infiltration runs carried out in an initially wet sandy-loam soil. In: Chemical Engineering Transactions, Chemical Engineering Transactions. Italian Association of Chemical Engineering -AIDIC, pp. 721–726. http://dx.doi.org/10.3303/cet1758121 Search in Google Scholar

Bagarello, V., Barca, E., Castellini, M., Iovino, M., Morbidelli, R., Saltalippi, C., Flammini, A., 2020. A plot-scale uncertainty analysis of saturated hydraulic conductivity of a clay soil. Journal of Hydrology, Article Number: 125694. https://doi.org/10.1016/j.jhydrol.2020.12569410.1016/j.jhydrol.2020.125694 Search in Google Scholar

Baiamonte, G., Bagarello, V., D’Asaro, F., Palmeri, V., 2017. Factors influencing point measurement of near-surface saturated soil hydraulic conductivity in a small Sicilian basin. Land Degrad. Develop., 28, 970–982.10.1002/ldr.2674 Search in Google Scholar

Ben Slimene, E., Lassabatere, L., Šimůnek, J., Winiarski, T., Gourdon, R., 2017. The role of heterogeneous lithology in a glaciofluvial deposit on unsaturated preferential flow-a numerical study, Journal of Hydrology and Hydromechanics, 65, 3, 209–221. DOI: 10.1515/johh-2017-0004, 201710.1515/johh-2017-0004 Search in Google Scholar

Biddoccu, M., Ferraris, S., Opsi, F., Cavallo, E., 2016. Long-term monitoring of soil management effects on runoff and soil erosion in sloping vineyards in Alto Monferrato (North-West Italy). Soil Till. Res., 155, 176–189.10.1016/j.still.2015.07.005 Search in Google Scholar

Biddoccu, M., Ferraris, S., Pitacco, A., Cavallo, E., 2017. Temporal variability of soil management effects on soil hydrological properties, runoff and erosion at the field scale in a hillslope vineyard, North-West Italy. Soil Till. Res., 165, 46–58.10.1016/j.still.2016.07.017 Search in Google Scholar

Bien, L.B., Predelus, D., Lassabatere, L., Winiarski, T., Angulo-Jaramillo, R., 2013. Combined effect of infiltration, capillary barrier and sloping layered soil on flow and solute transfer in a heterogeneous lysimeter. J. Mod. Hydrol., 138–153.10.4236/ojmh.2013.33018 Search in Google Scholar

Bouarafa, S., Lassabatere, L., Lipeme-Kouyi, G., Angulo-Jaramillo, R., 2019. Hydrodynamic characterization of sustainable urban drainage systems (SuDS) by using Beerkan infiltration experiments. Water, 11, 4, Article Number: 660. DOI: 10.3390/w1104066010.3390/w11040660 Search in Google Scholar

Braud, I., De Condappa, D., Soria, J.M., Haverkamp, R., Angulo-Jaramillo, R., Galle, S., et al., 2005. Use of scaled forms of the infiltration equation for the estimation of un-saturated soil hydraulics properties (the Beerkan method). Eur. J. Soil Sci., 56, 361–374.10.1111/j.1365-2389.2004.00660.x Search in Google Scholar

Braud, I., Desprats, J.F., Ayral, P.A., Bouvier, C., Vandervaere, J.P., 2017. Mapping topsoil field-saturated hydraulic conductivity from point measurements using different methods. J. Hydrol. Hydromech., 65, 264–275.10.1515/johh-2017-0017 Search in Google Scholar

Brooks, R.H., Corey, T., 1964. hydraulic properties of porous media. Hydrol. Paper 3, Colorado State University, Fort Collins. Search in Google Scholar

Burdine, N.T., 1953. Relative permeability calculation from pore size distribution data. Petr. Trans. Am. Inst. Min. Metall. Eng., 198, 71–77.10.2118/225-G Search in Google Scholar

Cannavo, P., Vidal-Beaudet, L., Béchet, B., Lassabatere, L., Charpentier, S., 2010. Spatial distribution of sediments and transfer properties in soils in a stormwater infiltration basin. J. Soils Sediments, 10, 8, 1499–1509.10.1007/s11368-010-0258-7 Search in Google Scholar

Castellini, M., Pirastru, M., Niedda, M., Ventrella, D., 2013. Comparing physical quality of tilled and no-tilled soils in an almond orchard in southern Italy. Ital. J. Agron., 8, 149–157. DOI: 10.4081/ija.2013.e2010.4081/ija.2013.e20 Search in Google Scholar

Castellini, M., Giglio, L., Niedda, M., Palumbo, A.D., Ventrella, D., 2015. Impact of biochar addition on the physical and hydraulic properties of a clay soil. Soil Till. Res., 154, 1–13.10.1016/j.still.2015.06.016 Search in Google Scholar

Castellini, M., Iovino, M., Pirastru, M., Niedda, M., Bagarello, V., 2016. Use of BEST procedure to assess soil physical quality in the Baratz Lake catchment (Sardinia, Italy). Soil Sci. Soc. Am. J., 80, 742–755.10.2136/sssaj2015.11.0389 Search in Google Scholar

Castellini, M., Di Prima, S., Iovino, M., 2018. An assessment of the BEST procedure to estimate the soil water retention curve: a comparison with the evaporation method. Geoderma, 320, 82–94.10.1016/j.geoderma.2018.01.014 Search in Google Scholar

Castellini, M., Iovino, M., 2019. Pedotransfer functions for estimating soil water retention curve of Sicilian soils. Archives of Agronomy and Soil Science, 65, 10, 1401–1416. DOI: 10.1080/03650340.2019.156671010.1080/03650340.2019.1566710 Search in Google Scholar

Castellini, M., Fornaro, F., Garofalo, P., Giglio, L., Rinaldi, M., Ventrella, D., Vitti, C., Vonella, A.V. 2019a. Effects of notillage and conventional tillage on physical and hydraulic properties of fine textured soils under winter wheat. Water, 11, Article Number: 484. DOI: 10.3390/w1103048410.3390/w11030484 Search in Google Scholar

Castellini, M., Stellacci, A.M., Tomaiuolo, M., Barca, E. 2019b. Spatial variability of soil physical and hydraulic properties in a durum wheat field: an assessment by the BEST-procedure. Water, 11, Article Number: 1434. DOI: 10.3390/w1107143410.3390/w11071434 Search in Google Scholar

Castellini, M., Stellacci, A.M., Mastrangelo, M., Caputo, F., Manici, L.M., 2020a. Estimating the soil hydraulic functions of some olive orchards: Soil management implications for water saving in soils of Salento peninsula (southern Italy). Agronomy, 10, Article Number: 177. DOI: 10.3390/agronomy1002017710.3390/agronomy10020177 Search in Google Scholar

Castellini, M., Vonella, A.V., Ventrella, D., Rinaldi, M., Baiamonte, G. 2020b. Determining soil hydraulic properties using infiltrometer techniques: an assessment of temporal variability in a long-term experiment under minimum- and no-tillage soil management. Sustainability, 12, Article Number: 5019. DOI: 10.3390/su1212501910.3390/su12125019 Search in Google Scholar

Celentano, D., Rousseau, G.X., Engel, V.L., Zelarayan, M., Oliveira, E.C., Araujo, A.C.M., et al., 2017. Degradation of riparian forest affects soil properties and ecosystem services provision in eastern Amazon of Brazil. Land Degrad. Develop., 28, 482–493.10.1002/ldr.2547 Search in Google Scholar

Cherubin, M.R., Karlen, D.L., Franco, A.L.C., Tormena, C.A., Cerri, C.E.P., Davies, C.A., et al., 2016. Soil physical quality response to sugarcane expansion in Brazil. Geoderma, 267, 156–168.10.1016/j.geoderma.2016.01.004 Search in Google Scholar

Chyba, J., Kroulík, M., Kristof, K., Misiewicz, P.A., Chaney, K., 2014. Influence of soilcompaction by farm machinery and livestock on water infiltration rate on grass-land. Agron. Res., 12, 59–64. Search in Google Scholar

Chyba, J., Kroulik, M., Kristof, K., Misiewicz, P.A., 2017. The influence of agricultural traffic on soil infiltration rates. Agronomy Research, 15, 3, 664–673. Search in Google Scholar

Ciollaro, G., Lamaddalena, N., 1998. Effect of tillage on the hydraulic properties of a vertic soil. J. Agric. Eng. Res., 71, 147–155.10.1006/jaer.1998.0312 Search in Google Scholar

Concialdi, P., Di Prima, S., Bhanderi, H.M., Stewart, R.D., Abou Najm, M.R., Lal Gaur, M., Angulo-Jaramillo, R., Lassabatere, L., 2020. An open-source instrumentation package for intensive soil hydraulic characterization. J. Hydrol., 582, Article Number 124492. https://doi.org/10.1016/j.jhydrol.2019.12449210.1016/j.jhydrol.2019.124492 Search in Google Scholar

Coutinho, A.P., Lassabatere, L., Montenegro, S., Antonino, A.C.D., Angulo-Jaramillo, R., Cabral, J.J.S.P., 2016. Hydraulic characterization and hydrological behaviour of a pilot permeable pavement in an urban centre, Brazil. Hydrol. Process., 30, 4242–4254. DOI: 10.1002/hyp.1098510.1002/hyp.10985 Search in Google Scholar

Cullotta, S., Bagarello, V., Baiamonte, G., Gugliuzza, G., Iovino, M., La Mela Veca, D.S., et al., 2016. Comparing different methods to determine soil physical quality in a Mediterranean forest and pasture land. Soil Sci. Soc. Am. J., 80, 1038–1056.10.2136/sssaj2015.12.0447 Search in Google Scholar

Dexter, A.R., 2004. Soil physical quality: Part I. Theory, effects of soil texture, density, and organic matter, and effects on root growth. Geoderma, 120, 201–214. https://doi.org/10.1016/J.GEODERMA.2003.09.00410.1016/j.geoderma.2003.09.004 Search in Google Scholar

Di Prima, S., 2013. Automatic analysis of multiple Beerkan infiltration experiments for soil Hydraulic Characterization In: Proc. 1st CIGR Inter-Regional Conference on Land and Water Challenges. p.127. Search in Google Scholar

Di Prima, S., 2015. Automated single ring infiltrometer with a low-cost microcontroller circuit. Comput. Electron. Agric., 118, 390–395.10.1016/j.compag.2015.09.022 Search in Google Scholar

Di Prima, S., Lassabatere, L., Bagarello, V., Iovino, M., Angulo-Jaramillo, R., 2016. Testing a new automated single ring infiltrometer for Beerkan infiltration experiments. Geoderma, 262, 20–34.10.1016/j.geoderma.2015.08.006 Search in Google Scholar

Di Prima, S., Bagarello, V., Lassabatere, L., Angulo-Jaramillo, R., Bautista, I., Burguet, M., et al., 2017. Comparing Beer-kan infiltration tests with rainfall simulation experiments for hydraulic characterization of a sandy-loam soil. Hydrol. Process., 31, 3520–3532.10.1002/hyp.11273 Search in Google Scholar

Di Prima, S., Concialdi, P., Lassabatere, L., Angulo-Jaramillo, R., Pirastru, M., Cerda, A.; et al., 2018a. Laboratory testing of Beerkan infiltration experiments for assessing the role of soil sealing on water infiltration. Catena, 167, 373–384.10.1016/j.catena.2018.05.013 Search in Google Scholar

Di Prima, S., Rodrigo-Comino, J., Novara, A., Iovino, M., Pirastru, M., Keesstra, S., et al., 2018b. Soil physical quality of citrus orchards under tillage, herbicide, and organic managements. Pedosphere, 28, 463–477.10.1016/S1002-0160(18)60025-6 Search in Google Scholar

Di Prima, S., Castellini, M., Abou Najm, M.R., Stewart, R.D., Angulo-Jaramillo, R., Winiarski, T., Lassabatere, L., 2019. Experimental assessment of a new comprehensive model for single ring infiltration data. J. Hydrol., 573, 937–951. https://doi.org/10.1016/J.JHYDROL.2019.03.07710.1016/j.jhydrol.2019.03.077 Search in Google Scholar

Di Prima, S., Stewart, R.D., Castellini, M., Bagarello, V., Abou Najm, M.R., Pirastru, M., Giadrossich, F., Iovino, M., Angulo-Jaramillo, R., Lassabatere, L., 2020a. Estimating the macroscopic capillary length from Beerkan infiltration experiments and its impact on saturated soil hydraulic conductivity predictions. Journal of Hydrology, 589, 125159. https://doi.org/10.1016/j.jhydrol.2020.12515910.1016/j.jhydrol.2020.125159 Search in Google Scholar

Di Prima, S., Winiarski, T., Angulo-Jaramillo, R., Stewart, R.D., Castellini, M., Abou Najm, M.R., Ventrella, D., Pirastru, M., Giadrossich, F., Capello, G., Biddoccu, M., Lassabatere, L., 2020b. Detecting infiltrated water and preferential flow pathways through time-lapse ground-penetrating radar surveys. Science of the Total Environment, Article Number: 138511. https://doi.org/10.1016/j.scitotenv.2020.13851110.1016/j.scitotenv.2020.13851132320879 Search in Google Scholar

Donatelli, M., 2014. BioMA-biophysical model application framework. https://en.wikipedia.org/wiki/BioMA Search in Google Scholar

Erban, T., Stehlik, M., Sopko B., Markovic M., Seifrtova M., Halesova T., et al., 2018. The different behaviors of glyphosate and AMPA in compost-amended soil. Chemosphere, 207, 78–83.10.1016/j.chemosphere.2018.05.00429772427 Search in Google Scholar

Elrick, D.E., Reynolds, W.D., 1992. Methods for analyzing constant-head well permeameter data. Soil Sci. Soc. Am. J., 56, 320–323.10.2136/sssaj1992.03615995005600010052x Search in Google Scholar

Fernández-Gálvez, J., Pollacco, J., Lassabatere, L., Angulo-Jaramillo, R., Carrick, S., 2019. A general Beerkan Estimation of Soil Transfer parameters method predicting hydraulic parameters of any unimodal water retention and hydraulic conductivity curves: Application to the Kosugi soil hydraulic model without using particle size distribution data. Advances in Water Resources, 129, 118–130.10.1016/j.advwatres.2019.05.005 Search in Google Scholar

Ferrara, R.M., Mazza, G., Muschitiello, C., Castellini, M., Stellacci, A.M., Navarro, A., et al., 2017. Short-term effects of conversion to no-tillage on respiration and chemical -physical properties of the soil: a case study in a wheat cropping system in semi-dry environment. Ital. J. Agrometeorol., 47–58. http://dx.doi.org/10.19199/2017.1.2038-5625.047 Search in Google Scholar

Fletcher, T.D., Shuster, W., Hunt, W.F., Ashley, R., Butler, D., Arthur, S., Trowsdale, S., Barraud, S., Semadeni-Davies, A., Bertrand-Krajewski, J.-L., et al., 2015. SUDS, LID, BMPs, WSUD and more–The evolution and application of terminology surrounding urban drainage. Urban Water Journal, 12, 525–542.10.1080/1573062X.2014.916314 Search in Google Scholar

Gette-Bouvarot, M., Mermillod-Blondin, F., Angulo-Jaramillo, R., Delolme, C., Lemoine, D., Lassabatere, et al., 2014. Coupling hydraulic and biological measurements highlights the key influence of algal biofilm on infiltration basin performance. Ecohydrology, 7, 950–964.10.1002/eco.1421 Search in Google Scholar

Gonzalez-Merchan, C., Barraud, S., Bedell, J.P., 2014. Influence of spontaneous vegetation in stormwater infiltration system clogging. Environ. Sci. Pollut. Res., 21, 5419–5426.10.1007/s11356-013-2398-y24352543 Search in Google Scholar

Gonzalez-Sosa, E., Braud, I., Dehotin, J., Lassabatere, L., Angulo-Jaramillo, R., Lagouy, M., et al., 2010. Impact of land use on the hydraulic properties of the topsoil in a small French catchment. Hydrol. Process., 24, 2382–2399.10.1002/hyp.7640 Search in Google Scholar

Goutaland, D., Winiarski, T., Lassabatere, L., Dubé, J.S., Angulo-Jaramillo, R., 2013. Sedimentary and hydraulic characterization of a heterogeneous glaciofluvial deposit: application to the modeling of unsaturated flow. Eng. Geol., 168, 127–139.10.1016/j.enggeo.2013.09.006 Search in Google Scholar

Grimaldi, M., Oszwald, J., Dolédec, S., Hurtado, del, M.P., de Souza Miranda, I., Arnauld de Sartre, X., et al. 2014. Ecosystem services of regulation and support in Amazonian pioneer fronts: searching for landscape drivers. Landscape Ecol., 29, 311–328. Search in Google Scholar

Haverkamp, R., Ross, P.J., Smettem, K.R.J., Parlange, J.Y., 1994. Three-dimensional analysis of infiltration from the disc infiltrometer: 2. Physically based infiltration equation. Water Resour. Res., 30, 2931–2935. https://doi.org/10.1029/94WR0178810.1029/94WR01788 Search in Google Scholar

Iserloh, T., Ries, J.B., Arnáez, J., Boix-Fayos, C., Butzen, V., Cerdà, A., et al., 2013. European small portable rainfall simulators: A comparison of rainfall characteristics. Catena, 110, 100–112. https://doi.org/10.1016/j.catena.2013.05.01310.1016/j.catena.2013.05.013 Search in Google Scholar

Jirků, V., Kodešová, R., Nikodem, A., Mühlhanselová, M., Žigová, A., 2013. Temporal variability of structure and hydraulic properties of top soilof three soil types. Geoderma, 204–205, 43–58. https://doi.org/10.1016/j.geoderma.2013.03.02410.1016/j.geoderma.2013.03.024 Search in Google Scholar

Kanso, T., Tedoldi, D., Gromaire, M., Ramier, D., Saad, M., Chebbo, G., 2018. Horizontal and vertical variability of soil hydraulic properties in roadside sustainable drainage systems (SuDS)-nature and implications for hydrological performance evaluation. Water, 10, Article Number: 987.10.3390/w10080987 Search in Google Scholar

Keller, T., Sutter, J.A., Nisse, K., Rydberg, T., 2012. Using field measurement of saturated soil hydraulic conductivity to detect low-yielding zones in three Swedish fields. Soil Till. Res., 124, 68–77.10.1016/j.still.2012.05.002 Search in Google Scholar

Khaledian, M.R., Mailhol, J.C., Ruelle, P., 2012. No-tillage impacts on soil hydraulic properties as compared with conventional tillage. Journal of Biological and Environmental Sciences, 6, 213–218. Search in Google Scholar

Khaledian, M.R., Shabanpour, M., Alinia, H., 2016. Saturated hydraulic conductivity variation in a small garden under drip irrigation. Geosystem Engineering, 19, 266–274.10.1080/12269328.2016.1188030 Search in Google Scholar

Khodaverdiloo, H., Cheraghabdal, H.K., Bagarello, V., Iovino, M., Asgarzadeh, H., Dashtaki, S.G., 2017. Ring diameter effects on determination of field-saturated hydraulic conductivity of different loam soils. Geoderma, 303, 60–69.10.1016/j.geoderma.2017.04.031 Search in Google Scholar

Klute, A., Dirksen, C., 1986. Hydraulic conductivity and diffusivity: laboratory methods. In: Klute, A. (Ed.): Methods of Soil Analysis. Part 1. Physical and Mineralogical Methods, 2nd ed. Agronomy, vol. 9. American Society of Agronomy, Madison, WI, pp. 687–734.10.2136/sssabookser5.1.2ed.c28 Search in Google Scholar

Kovář, S., Mašek, J., Novák, P., 2017. Comparison of tillage systems in terms of water infiltration into the soil during the autumn season. Agronomy Research, 15, 4, 1629–1635. Search in Google Scholar

Lassabatere, L., Winiarski, T., Galvez-Cloutier, R., 2004. Retention of three heavy metals (Zn, Pb, and Cd) in a calcareous soil controlled by the modification of flow with geotextiles. Environmental Science and Technology, 38, 4215–4221. https://doi.org/10.1021/es035029s10.1021/es035029s15352463 Search in Google Scholar

Lassabatere, L., Angulo-Jaramillo, R., Soria Ugalde, J.M., Cuenca, R., Braud, I., Haverkamp, R., 2006. Beerkan estimation of soil transfer parameters through infiltration experiments-BEST. Soil Sci. Soc. Am. J., 70, 521–532.10.2136/sssaj2005.0026 Search in Google Scholar

Lassabatere, L., Spadini, L., Delolme, C., Février, L., Galvez Cloutier, R., Winiarski, T., 2007. Concomitant Zn-Cd and Pb retention in a carbonated fluvio-glacial deposit under both static and dynamic conditions. Chemosphere, 69, 1499–1508. https://doi.org/10.1016/j.chemosphere.2007.04.05310.1016/j.chemosphere.2007.04.05317583773 Search in Google Scholar

Lassabatere, L., Peyrar, X., Angulo-Jaramillo, R., Simunek, J., 2009. Effects of the hydraulic conductivity of the matrix/macropore interface on cumulative infiltrations into dual-permeability media. AGU Fall Meeting Abstracts: A764. Search in Google Scholar

Lassabatere, L., Angulo-Jaramillo, R., Goutaland, D., Letellier, L., Gaudet, J.P., Winiarski, T., Delolme, C., 2010. Effect of settlement of sediments on water infiltration in two urban infiltration basins. Geoderma, 156, 316–325.10.1016/j.geoderma.2010.02.031 Search in Google Scholar

Lassabatere, L., Angulo-Jaramillo, R., Yilmaz, D., Winiarski, T., 2013. BEST method: Characterization of soil unsaturated hydraulic properties. In: Caicedo et al. (Eds): Advances in Unsaturated Soils. CRC Press, London, pp. 527–532. Search in Google Scholar

Lassabatére, L., Di Prima, S., Bouarafa, S., Iovino, M., Bagarello, V., Angulo-Jaramillo, R., 2019a. BEST-2D for characterizing dual-permeability unsaturated soils with ponded and tension infiltrometers. Vadose Zone Journal, 18, 1, 1–20. DOI: 10.2136/vzj2018.06.012410.2136/vzj2018.06.0124 Search in Google Scholar

Lassabatere, L., Di Prima, S., Angulo-Jaramillo, R., Keesstra, S., Salesa, D., 2019b. Beerkan multi-runs for characterizing water infiltration and spatial variability of soil hydraulic properties across scales. Hydrological Sciences Journal, 64, 2, 165–178. DOI: 10.1080/02626667.2018.156044810.1080/02626667.2018.1560448 Search in Google Scholar

Latorre, B., Moret-Fernández, D., Lassabatere, L., Rahmati M., López, M.V., Angulo-Jaramillo, R., et al., 2018. Influence of the β parameter of the Haverkamp model on the transient soil water infiltration curve. J. Hydrol., 567, 22–229.10.1016/j.jhydrol.2018.07.006 Search in Google Scholar

Leblanc, M., Tweed, S., Lyon, B.J., Bailey, J., Franklin, C.E., Harrington, G., Suckow, A., 2015. On the hydrology of the bauxite oases, Cape York Peninsula, Australia. J. Hydrol., 528, 668–682.10.1016/j.jhydrol.2015.06.001 Search in Google Scholar

Lozano-Baez, S., Cooper, M., Ferraz, S., Ribeiro Rodrigues, R., Pirastru, M., Di Prima, S., 2018. Previous land use affects the recovery of soil hydraulic properties after forest restoration. Water, 10, 1–16.10.3390/w10040453 Search in Google Scholar

Lozano-Baez, S.E., Cooper, M., Ferraz, S., Ribeiro Rodrigues, R., Castellini, M., Di Prima, S., 2019. Recovery of soil hydraulic properties for assisted passive and active restoration: Assessing historical land use and forest structure. Water, 11, 1, Article Number: 86. DOI: 10.3390/w1101008610.3390/w11010086 Search in Google Scholar

Mubarak, I., Mailhol, J.C., Angulo-Jaramillo, R., Ruelle, P., Boivin, P., Khaledian, M., 2009a. Temporal variability in soil hydraulic properties under drip irrigation. Geoderma, 150, 158–165.10.1016/j.geoderma.2009.01.022 Search in Google Scholar

Mubarak, I., Mailhol, J.C., Angulo-Jaramillo, R., Bouarfa, S., Ruelle, P., 2009b. Effect of temporal variability in soil hydraulic properties on simulated water transfer under high-frequency drip irrigation. Agric. Water Manage., 96, 1547–1559.10.1016/j.agwat.2009.06.011 Search in Google Scholar

Mubarak, I., Angulo-Jaramillo, R., Mailhol, J.C., Ruelle, P., Khaledian, M., Vauclin, M., 2010. Spatial analysis of soil surface hydraulic properties: is infiltration method dependent? Agric. Water Manage., 97, 1517–1526.10.1016/j.agwat.2010.05.005 Search in Google Scholar

Nimmo, J.R., Schmidt, K.M., Perkins, K.S., Stock, J.D., 2009. Rapid measurement of field-saturated hydraulic conductivity for areal characterization. Vadose Zone Journal, 8, 142–149.10.2136/vzj2007.0159 Search in Google Scholar

Philip, J.R., 1992. Falling head ponded infiltration. Water Resour. Res., 28, 2147–2148.10.1029/92WR00704 Search in Google Scholar

Pirastru, M., Niedda M., Castellini, M., 2014. Effects of maquis clearing on the properties of the soil and on the near-surface hydrological processes in a semi-arid Mediterranean environment. J. Agric. Eng., 45, 176–187.10.4081/jae.2014.428 Search in Google Scholar

Preti, F., Guastini, E., Penna, D., Dani, A., Cassiani, G., Boaga, J., et al., 2018. Conceptualization of water flow pathways in agricultural terraced landscapes. Land Degrad. Dev., 29, 651–662.10.1002/ldr.2764 Search in Google Scholar

Rahmati, M., Weihermüller, L., Vanderborght, J., Pachepsky, Y.A., Mao, L., Sadeghi, S.H., et al., 2018. Development and analysis of Soil Water Infiltration Global Database. Earth System Science Data Discussions, 10, 1237–1263. https://doi.org/10.5194/essd-2018-1110.5194/essd-2018-11 Search in Google Scholar

Rallo, G., Provenzano, G., Castellini, M., Sirera, À.P., 2018. Application of EMI and FDR sensors to assess the fraction of transpirable soil water over an olive grove. Water, 10, Article Number: 168.10.3390/w10020168 Search in Google Scholar

Rex, J., Dubé, S., Foord, V., 2013. Mountain pine beetles, salvage logging, and hydrologic change: Predicting wet ground areas. Water, 5, 443–461.10.3390/w5020443 Search in Google Scholar

Reyes-Gómez, V.M., Olivas, O.V., Moreno, J.T.A., Sannwald, E.H., Rodríguez, A.R., 2015. Functional ecohydrological differences among native and exotic grassland covers in suburban landscapes of Chihuahua city, Mexico. Landscape and Urban Planning, 139, 54–62.10.1016/j.landurbplan.2015.03.005 Search in Google Scholar

Reynolds, W.D., Elrick, D.E., 1985. In situ measurement of field-saturated hydraulic conductivity, sorptivity and the alpha-parameter using the Guelph permeameter. Soil Science, 140, 292–302.10.1097/00010694-198510000-00008 Search in Google Scholar

Reynolds, W.D., Elrick, D.E., 1990. Ponded infiltration from a single ring: I. Analysis of steady flow. Soil Sci. Soc. Am. J., 54, 1233–1241.10.2136/sssaj1990.03615995005400050006x Search in Google Scholar

Reynolds, W.D., Elrick, D.E., 2002. Pressure infiltrometer. In: Dane, J.H., Topp, G.C. (Eds.): Methods of Soil Analysis. Physical Methods. Part 4. 3rd ed. Soil Sci. Soc. Am., Madison, WI; pp. 826–836. Search in Google Scholar

Reynolds, W.D., Lewis, J.K., 2012. A drive point application of the Guelph permeameter method for coarse-textured soils. Geoderma, 187–188, 59–66.10.1016/j.geoderma.2012.04.004 Search in Google Scholar

Šařec, P., Novak, P., 2017. Influence of manure and activators of organic matter biological transformation on selected soil physical properties of Modal Luvisol. Agronomy Research, 15, 2, 565–575. Search in Google Scholar

Scarabeli, I.G.R., Tormena, C.A., Favilla, H.S., Figueiredo, G.C., 2018. Field-saturated hydraulic conductivity measured by two techniques and at different sampling positions relative to maize-crop rows and interrows. Semina: Ciências Agrárias, Londrina, 9, 1, 403–410.10.5433/1679-0359.2018v39n1p403 Search in Google Scholar

Schwen, A., Bodner, G., Scholl, P., Buchan, G.D., Loiskandl, W., 2011. Temporal dnamics of soil hydraulic properties and the water-conducting porosity under different tillage. Soil and Tillage Research, 113, 2, 89–98.10.1016/j.still.2011.02.005 Search in Google Scholar

Shelia, V., Šimunek, J., Boote, K., Hoogenbooom, G., 2018. Coupling DSSAT and HYDRUS-1D for simulations of soil water dynamics in the soil-plant-atmosphere system. J. Hydrol. Hydromech., 66, 232–245. https://doi.org/10.1515/johh-2017-005510.1515/johh-2017-0055 Search in Google Scholar

Servadio, P., Bergonzoli, S., Beni, C., 2016. Soil tillage systems and wheat yield under climate change scenarios. Agronomy, 6, 43.10.3390/agronomy6030043 Search in Google Scholar

Sidoli, P., Lassabatere, L., Angulo-Jaramillo, R., Baran, N., 2016. Experimental and modeling of the unsaturated transports of S-metolachlor and its metabolites in glaciofluvial vadose zone solids. J. Contam. Hydrol., 190, 1–14.10.1016/j.jconhyd.2016.04.00127131475 Search in Google Scholar

Siltecho, S., Hammecker, C., Sriboonlue, V., Clermont-Dauphin, C., Trelo-ges, V., Antonino, A.C.D., Angulo-Jaramillo, R., 2015. Use of field and laboratory methods for estimating unsaturated hydraulic properties under different land uses. Hydrol. Earth Syst. Sci., 19, 1193–1207.10.5194/hess-19-1193-2015 Search in Google Scholar

Šimŭnek, J., van Genuchten, M.T., Šejna, M., 2016. Recent developments and applications of the HYDRUS computer software packages. Vadose Zone Journal, 15, 7, 1–25. https://doi.org/10.2136/vzj2016.04.003310.2136/vzj2016.04.0033 Search in Google Scholar

Smettem, K.R.J., Parlange, J.Y., Ross, P.J., Haverkamp, R., 1994. 3-Dimensional analysis of infiltration from the disc infiltrometer 1. A capillary-based theory. Water Resour. Res., 30, 2925–2929.10.1029/94WR01787 Search in Google Scholar

Souza, E.S., Antonino, A.C.D., Heck, R.J., Montenegro, S.M.G.L., Lima, J.R.S., Sampaio, E.V.S.B., et al., 2014. Effect of crusting on the physical and hydraulic properties of a soil cropped with castor beans (Ricinus communis L.) in the north eastern region of Brazil. Soil Till. Res., 141, 55–61.10.1016/j.still.2014.04.004 Search in Google Scholar

Souza, R., Souza, E., Netto, A.M., De Almeida, A.Q., J´unior, G.B., Silva, J.R.I., De Sousa Lima, J.R., Antonino, A.C.D., 2017. Assessment of the physical quality of a Fluvisol in the Brazilian semiarid region. Geoderma Reg., 10, 175–182.10.1016/j.geodrs.2017.07.008 Search in Google Scholar

Touma, J., Raclot, D., Al-Ali, Y., Zante, P., Hamrouni, H., Dridi, B., 2011. In situ determination of the soil surface crust hydraulic resistance. J. Hydrol., 403, 3–4, 253–260.10.1016/j.jhydrol.2011.04.004 Search in Google Scholar

van Genuchten, M.T., 1980. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Sci. Soc. Am. J., 44, 5, 892–898.10.2136/sssaj1980.03615995004400050002x Search in Google Scholar

Verbist, K.M.J., Cornelis, W.M., Torfs, S., Gabriels, D., 2013. Comparing methods to determine hydraulic conductivities on stony soils. Soil Sci. Soc. Am. J., 77, 1, 25–42.10.2136/sssaj2012.0025 Search in Google Scholar

White, I., Sully, M.J., 1987. Macroscopic and microscopic capillary length and time scales from field infiltration. Water Resour. Res., 23, 1514–1522. https://doi.org/10.1029/WR023i008p0151410.1029/WR023i008p01514 Search in Google Scholar

Wu, L., Pan, L., Mitchell, J., Sanden, B., 1999. Measuring saturated hydraulic conductivity using a generalized solution for single-ring infiltrometers. Soil Sci. Soc. Am. J., 63, 788–792.10.2136/sssaj1999.634788x Search in Google Scholar

Xu, X., Lewis, C., Liu, W., Albertson, J.D., Kiely, G., 2012. Analysis of single ring infiltrometer data for soil hydraulic properties estimation: comparison of BEST and Wu methods. Agric. Water Manage., 107, 34–41.10.1016/j.agwat.2012.01.004 Search in Google Scholar

Yang, J., Xu, X., Liu, M., Xu, C., Luo, W., Song, T., Du, H., Kiely, G., 2016. Effects of Napier grass management on soil hydrologic functions in a karst landscape, southwestern China. Soil Till. Res., 157, 83–92.10.1016/j.still.2015.11.012 Search in Google Scholar

Yang, J., Xu, X., Liu, M., Xu, C., Zhang, Y., Luo, W., Zhang, R., Li, Z., Kiely, G., 2017. Effects of Grain for Green program on soil hydrologic functions in karst landscapes, southwestern China. Agric. Ecosyst. Environ., 247, 120–129.10.1016/j.agee.2017.06.025 Search in Google Scholar

Yilmaz, D., Lassabatere, L., Angulo-Jaramillo, R., Deneele, D., Legret, M., 2010. Hydrodynamic characterization of basic oxygen furnace slag through an adapted BEST method. Va-dose Zone J., 9, 1, 107.10.2136/vzj2009.0039 Search in Google Scholar

Yilmaz, D., Lassabatere, L., Deneele, D., Angulo-Jaramillo, R., Legret, M., 2013. Influence of carbonation on the microstructure and hydraulic properties of a basic oxygen furnace slag. Vadose Zone J., 12, 2. https://doi.org/10.2136/vzj2012.012110.2136/vzj2012.0121 Search in Google Scholar

eISSN:
1338-4333
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Engineering, Introductions and Overviews, other