Acceso abierto

Evapotranspiration changes in the forest-steppe and steppe zones under soil mulching


Cite

Agricultural ecosystems, 1987. Moscow, VO Agropromizdat, 224 pp. (In Russian.)Search in Google Scholar

Allen, H.P., 1985. Direct seeding and minimum soil treatment. Moscow, Agropromizdat, 208 pp. (In Russian.)Search in Google Scholar

Berg, L.S., 1947. Geographic zones of the Soviet Union. Moscow, Geografgiz, 397 pp. (In Russian.)Search in Google Scholar

Berg L. S., 1952: Geographic zones of the Soviet Union. Vol. 2. Moscow, Geografgiz, 510 pp. (In Russian.)Search in Google Scholar

Budagovskiy, A.I., 1964. Soil water evapotranspiration. Moscow, Nauka, 242 pp. (In Russian.)Search in Google Scholar

Budagovskiy, A.I., Grigoreva, N.I., 1991: Ways of increasing the efficiency of the use of soil water resources. Vodnye resursy, 1, 131-142. (In Russian.)Search in Google Scholar

Budagovskyi, A.I., Novák, V. 2011. Theory of evapotranspiration: 1. Transpiration and its quantitative description. J. Hydrol. Hydromech., 59, 1, 3-23.Search in Google Scholar

Budagovskyi, A.I., Novák, V., 2011. Theory of evapotranspiration: 2. Soil and intercepted water evaporation. J. Hydrol. Hydromech., 59, 2, 73-84.10.2478/v10098-011-0006-8Search in Google Scholar

Budagovskiy, A.I., Shumova, N.A., 1976. Methods of the analysis of the structure of the evapotranspiration and estimates of the efficiency of its control. Vodnye resursy, 6, 83-98. (In Russian.)Search in Google Scholar

Dzhogan, L.YA., Gusev, E.M., 2003: Mulching effect on water supply and the spring wheat crop yield in the central and southern regions of the East European Plane. Pochvovedenie, 11, 1371-1382. (In Russian.)Search in Google Scholar

Gusev, E.M., 1993: Formation of the regime and soil water resources in the winter-spring period. Moscow, Fizmatlit, 160 pp. (In Russian.)Search in Google Scholar

Gusev, E.M., Dzhogan, L.Ya., 2000. Methodology of assessing the influence of soil mulching with plant residues on the formation of the water regime of the agroecosystems. Pochvovedenie, 11, 1403-1414. (In Russian.)Search in Google Scholar

Novikova, N.M., Nazarenko, O.G., 2007. Modern hydromorphism: processes, forms, display, and signs. Aridnye ekosistemy, 13, 33-34, 70-82. (In Russian.)Search in Google Scholar

Shumova, N.A., 1994: The leaf area index and evapotranspiration from spring wheat crops. J. Hydrol. Hydromech., 42, 4-5, 297-314.Search in Google Scholar

Shumova, N.A., 1997. Generalize estimates of the effectiveness of the agrohydrological methods of the soil water management. Proceedings of the conference of management of landscapes disturbed by channel incision, Oxford Campus, The University of Mississippi, 433-438.Search in Google Scholar

Shumova, N.A., 1999. Validation of a model for estimation of the available soil water storage. J. Hydrol. Hydromech., 47, 2, 103-116.Search in Google Scholar

Shumova, N.A., 2000. Approach and evaluation of soil water resources in an arid region of the European steppe zone territory. J. Hydrol. Hydromech., 48, 6, 381-398.Search in Google Scholar

Shumova, N.A., 2009. Crop water supply and its relation to yield of spring wheat in the south of Russian plane. J. Hydrol. Hydromech., 57, 1, 26-39.10.2478/v10098-009-0003-3Search in Google Scholar

ISSN:
0042-790X
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Engineering, Introductions and Overviews, other