Modelling soil water content variations under drought stress on soil column cropped with winter wheat
References
- Bennett, S.J., Bishop, T.F.A., Vervoort, R.W., 2013. Using SWAP to quantify space and time related uncertainty in deep drainage model estimates: A case study from nothern NSW, Australia. Agricultural Water Management, 130, 142-153.
- Boesten, J.J.T.I., Stroosnijder, L., 1986. Simple model for daily evaporation from fallow tilled soil under spring conditions in a temperate climate. Neth. J. Agric. Sci., 34, 75-90.
- Cseuz, L., Pauk, J., Kertész, Z., Matuz, J., Fónad, P., Tari, I., Erdei, L., 2002. Wheat breeding for tolerance to drought stress at the Cereal Research Non-Profit Company. Acta Biologica Szegediensis, 46, 25-26.
- Csorba, Sz., 2007. Studying the soil water regime of different wheat genotypes in a stress diagnosis system. Master thesis, Szent István University, Gödöllő, Hungary. (In Hungarian).
- Deelstra, J., Farkas, Cs., Engebretsen, A., Kværnø, S., Beldring, S., Olszewska, A., Nesheim, L., 2010. Can we simulate runoff from agriculture-dominated watershed? Comparison of the DrainMod, SWAT, HBV, COUP and INCA models applied for the Skuterud catchment. In: Grzybek, A. (Ed.): Modelling of biomass utilisation for energy purpose. Bioforsk FOKUS, 5, 6, 119-128.
- Djilianov, D., Georgieva, T., Moyankova, D., Atanassov, A., Shinozaki, K., Smeeken, S.C.M., Verma, D.P.S., Murata, N., 2005. Improved abiotic stress tolerance in plants by accumulation of osmoprotectants - gene transfer approach. Biotechnology & Biotechnological Equipment, 19, 63-70.
- Farkas, Cs., Gyuricza, Cs., László, P., Birkás, M., 2000. Study of the influence of soil tillage on soil water regime. In: Horn, R., van den Akker, J.J.H., Arvidsson, J. (Eds.): Subsoil Compaction. Advances in Geoecology, 32, Catena Verlag, Cremlingen Destedt, pp. 251-257.
- Farkas, Cs., Hagyó, A., 2010. Applicability of profile- and watershed scale mathematical models for evaluating the environmental impacts of climate change. „Klíma-21” Füzetek, 62, 59-74. (In Hungarian).
- Feddes, R.A., Kowalik, P.J., Zaradny, H., 1978. Simulation of field water use and crop yield. Centre for Agricultural Publishing and Documentation, Wageningen, The Netherlands, 195 p.
- Fendeková, M., Fendek, M., 2012. Groundwater drought in the Nitra river basin - identification and classification. J. Hydrol. Hydromech., 60, 185-193.
- Gáspár, L., Czövek, P., Fodor, F., Hoffmann, B., Nyitrai, P., Király, I., Sárvári, É., 2005. Greenhouse testing of wheat cultivators compared to those with known drought tolerance. Acta Biologica Szegediensis, 49, 97-98.
- Głab, T. 2014. Effect of soil compaction and N fertilization on soil pore characteristics and physical quality of sandy loam soil under red clover/grass sward. Soil Till. Res., 144, 8-19.
- Hermann, T., Makó, A., Máté, F., Tóth, G., Tóth, Z., 2006. Soil fertility assessment in a case study in Hungary. Cer Res Comm., 34,199-201.
- IPCC, 2014: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Field, C.B., V.R. Barros, D.J. Dokken, K.J. Mach, M.D. Mastrandrea, T.E. Bilir, M. Chatterjee, K.L. Ebi, Y.O. Estrada, R.C. Genova, B. Girma, E.S. Kissel, A.N. Levy, S.
- MacCracken, P.R. Mastrandrea, and L.L. White (eds.)]. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA, XXX pp.
- Jirků, V., Kodešová, R., Nikodem, A., Mühlhanselová, M., Žigová, A., 2013. Temporal variability of structure and hydraulic properties of topsoil of three soil types. Geoderma, 204-205, 43-58.
- Josa, R., Gorchis, G., Ginovart, M., Solé-Benet, A., 2013. Influence of tillage on soil macropore size, shape of top layer and crop development in a sub-humid environment. Biologia, 68, 1099-1103.
- Lukács, A., Pártay, G., Németh, T., Csorba, Sz., Farkas, Cs., 2008. Drought stress tolerance of two wheat genotypes. Soil & Water Res., 3, 95-104.
- Kodešová, R., Jirků, V., Kodeš, V., Mühlhanselová, M., Nikodem, A., Žigová, A., 2011. Soil structure and soil hydraulic properties of Haplic Luvisol used as arable land and grassland. Soil Till. Res., 111, 154-161.
- Korsunskaia, L.P., Farkas, Cs., 2004. Seasonal variability of soil water retention curves. In: Józefaciuk, G. (Ed.): Physics, chemistry and biogeochemistry in soil and plant studies.
- Multi-Authors Work, Institute of Agrophysics, Centre of Excellence for Applied Physics in Sustainable Agriculture AGROPHYSICS, Lublin, Poland, pp. 78-82. Available at: http://www.ipan.lublin.pl/uploads/mat_coe/mat_coe13.pdf
- Kutilek, M., Jendele, L., Panayiotopoulos, K.P., 2006. The influence of uniaxial compression upon pore size distribution in bi-modal soils. Soil Till. Res., 86, 27-37.
- Ma, Y., Feng, S., Huo, Z., Song X., 2011. Application of the SWAP model to simulate the field water cycle under deficit irrigation in Beijing, China. Mathematical and Computer Modelling, 54, 1044-1052.
- Maracchi, G., Sirotenko, O., Bindi, M., 2005. Impacts of present and future climate variability on agriculture and forestry int he temperate regions: Europe. Incrasing Climate Variability and Change, 70, 117-135.
- Monteith, J.L., 1981. Evaporation and surface temperature. Quarterly J. Royal Soc., 107, 1-27.
- Moriasi, D. N., Arnold, J.G., van Liew, M.W., Bingner, R.L., Harmel, R.D., Veith, T.L., 2007. Model evaluation guidelines for systematic quantification of accuracy in watershed simulations, Transactions of the ASABE 50, 885-900. Available at: http://swat.tamu.edu/media/1312/moriasimodeleval.pdf
- Mualem, Y. 1976. A new model for predicting the hydraulic conductivity of unsaturated porous media. Water Resources Research, 12, 513-522.
- Mubarak, I., Mailhol, J.C., Angulo-Jaramillo, R., Bouarfa, S., Ruelle, P., 2009. Effect of temporal variability in soil hydraulic properties on simulated water transfer under highfrequency drip irrigation. Agricultural Water Management, 96, 1547-1559.
- Nash, J.E., Sutcliffe, J.V., 1970. River flow forecasting through conceptual models part I - A discussion of principles. Journal of Hydrology, 10, 3, 282-290.
- Pant, J., Berkasem, B., Noppakoonwong, R., 1998. Effect of water stress ont he boron response of wheat genotypes under low boron conditions. Plant and Soil, 202, 193-200.
- Querrie, S.A., Stojanovic, J., Pekic, S., 1999. Improving drought resistance in small-grained cereals: A case study, progress and prospects. Plant Growth Regulation, 29, 1-21.
- Richards, L.E., 1931. Capillary conduction of liquids through porous mediums. Phys., 1, 318-339.
- Rosenzweig, C., Iglesias, A., Yang, X.B., Epstein, P.R., Chivian, E., 2001. Climate change and extreme weather events. Implications for food production, plant diseases, and pests. Global Change & Human Health, 2, 90-104.
- Schwen, A., Bodner, G., Loiskandl, W., 2011. Time-variable soil hydraulic properties in near-surface soil water simulations for different tillage methods. Agricultural Water Management, 99, 42-50.
- Sobczuk, A., Walczak, R.T., 1996. Bulk density dependence parametrization of water potential - moisture characteristics of soil. Polish Journal of Soil Science, XXIX/2, 81-85.
- Soldevilla-Martinez, M., Quemada, M., López-Urrea, R., Munoz-Carpena, R., Lizaso, J.I., 2014. Soil water balance: Comparing two simulation models of different levels of complexity with lysimeter observations. Agricultural Water Management, 139, 53-63.
- Szász, G., 1997. The agrometeorology of agricultural water management. In: Szász, G., Tőkei, L., (Eds): Meteorology for Agricultural Engineers, Horticulturalists and Foresters. Mezőgazda Publisher, Budapest, 411-470. (In Hungarian).
- Trakal, L., Kodesová, R., Komárek, M., 2013. Modelling of Cd, Cu, Pb and Zn transport in metal contaminated soil and their uptake by willow (Salix x smithinana) using HYDRUS-2D program. Plant Soil, 366, 433-451.
- van Dam, J.C., 2000. Field-scale water flow and solute transport. SWAP model concepts, parameter estimation and case studies. Doctoral Thesis Wageningen University. ISBN 90-5808-256-3
- van Dam, J.C., Groenendijk, P., Hendriks, R.F.A., Kroes, J.G., 2008. Advances of modeling water flow in variably saturated soils with SWAP. Vadose Zone J., 7, 2, 640-653.
- van Genuchten, M.Th., 1980. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils.
- Soil Sci. Soc. Am. J., 44, 892-898. van Genuchten, M.Th., Leij, F.J., Yates, S.R., 1991. The RETC code for quantifying the hydraulic functions of unsaturated soils, version 1.0. EPA Report 600/2-91/065, U.S. Salinity Laboratory, USDA, ARS, Riverside, California.
- Várallyay, Gy., 2005. Life quality - soil - food chain. Cer. Res. Comm., 34, 5-8.
- Végh, K.R., 2013. Root and leaf traits, water use and drought tolerance of maize genotypes. Biologia, 68, 1123-1127.
- WRB, 2006. World reference base for soil resources 2006. 2nd edition. World Soil Resources Reports No. 103. FAO, Rome. 128 pp.
- Zhang, S., Grip, H., Lovdahl, L., 2006. Effect of soil compaction on hydraulic properties of two loess soils in China. Soil Till. Res., 90, 117-125.
- Zhou, X., Lin, H.S., White, E.A., 2008. Surface soil hydraulic properties in four soil series under different land uses and their temporal changes. Catena, 73, 180-188.
DOI: https://doi.org/10.2478/johh-2014-0036 | Journal eISSN: 1338-4333 (formerly 0042-790X) | Journal ISSN: 0042-790X
Language: English
Page range: 269 - 276
Submitted on: Jun 12, 2014
Accepted on: Sep 1, 2014
Published on: Nov 15, 2014
Published by: Slovak Academy of Sciences, Institute of Hydrology
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2014 Szilveszter Csorba, Andrea Raveloson, Eszter Tóth, Viliam Nagy, Csilla Farkas, published by Slovak Academy of Sciences, Institute of Hydrology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.