Spatial Variation of Soil Properties Affecting Yield

Cereal Research Communications - Tập 34 - Trang 155-158 - 2006
Cs. Farkas1, A. Ristolainen2, L. Alakukku3
1Research Institute for Soil Science and Agricultural Chemistry of HAS, Budapest, Hungary
2MTT Agrifood Research Finland, Soils and Environment, Jokioinen, Finland
3Dept. of Agrotechnology, University of Helsinki, Finland

Tài liệu tham khảo

Addiscott, T., 1993. Simulation modelling and soil behaviour. Geoderma, 60. 15–40. Clausnitzer, V., et al., 1992. Simultaneous scaling of soil water retention and hydraulic conductivity curves. Water Resour. Res., 28:19–31. Farkas, Cs., et al., 2004. Simulation modeling of soil water regime of a heavy clay soil in Southern Finland. Proceedings of the 12th International Poster Day on Transport of water, 2004 November 25, Bratislava. 2004; CD-ROM. Hagyó, A. et al., 2005: Hydrophysical properties and évapotranspiration elements of a heavy clay grassland soil. Ccr. Res. Com., 33:217–220. Németh, T. et al., 2003. Integrated GPS and Internet based GIS applications for the support of agricultural advisory systems. In: Schnug E, et al., (eds.): “Fertilizers in context with resource management in agriculture’, CIEC, Debrecen (ISBN 963 9274 44 5) 2003; 30–37. Orlanus, T. and Nagy, V. 2002. Variability of soil moisture in the Held with heterogeneous soil cover. In: Gaál K. K. (ed.): CD Proc. 29th Scientific Days in Mosonmagyaróvár, Mosonmagyaróvár, 2002, s. ICD. Štekauerová V. et al., J. 2002. Using of pedotransfer functions for assessment of hydrolimits. Plant Production, 48:407–412. Van Dam, J., 2000. Field-scale water How and solute transport. Ph.D. thesis, Wageningen University, the Netherlands, 167 p.