Total Water Consumption of Alfalfa as a Function of Active Soil Surface and Bioclimatic Coefficients
https://doi.org/10.22314/2073-7599-2024-18-4-49-54
EDN: MYAXCJ
Abstract
The paper highlights the significant impact of irrigation on crop yields, emphasizing that in the challenging climatic conditions of the dry-steppe Trans-Volga region, it is impossible to obtain a consistently high alfalfa yield without irrigation. Since irrigation presents both substantial benefits and potential drawbacks, it requires a highly skilled approach to managing irrigated lands and water resources. To estimate the total water consumption of alfalfa in the dry-steppe Trans-Volga region, it is proposed to use bioclimatic coefficients and soil surface activity indicators. (Research purpose) The study aims to determine the total water consumption of alfalfa by using bioclimatic coefficients and active soil surface values to improve the efficiency of irrigation regimes. (Materials and methods) The primary input factors influencing the total water consumption volume were analyzed. Changes in total water consumption during specific phases of alfalfa development were assessed based on evapotranspiration and the relative reserves of productive moisture, using experimental data on the crop's water consumption. (Results and discussion) The empirical coefficients representing the active surface state of alfalfa crops were determined based on the sum of average daily temperatures, calculated using Budyko-Zubenko method for estimating evaporation from the water surface. It was found that the coefficients of active surface state change significantly during plant development, increasing from 0.5 during the growth-branching period to 0.78 during branching-budding and reaching 0.99-1.0 during the budding-flowering period. (Conclusions) Curvilinear relationships between the ratio of total water consumption to evaporation and the relative reserves of productive moisture during different phases of alfalfa growth and development were experimentally established. Empirical coefficients were derived for calculating total water consumption during different periods of alfalfa vegetation grown on dark chestnut soils in the dry steppe Trans-Volga region.
About the Authors
T. A. PankovaRussian Federation
Tatyana A. Pankova - Ph.D.(Eng.), associate professor.
Saratov
A. V. Kravchuk
Russian Federation
Alexey V. Kravchuk - Dr.Sc.(Eng.), professor.
Saratov
S. S. Orlova
Russian Federation
Svetlana S. Orlova - Ph.D.(Eng.), associate professor.
Saratov
O. V. Mikheeva
Russian Federation
Olga V. Mikheeva - Ph.D.(Eng.), associate professor.
Saratov
E. N. Mirkina
Russian Federation
Elena N. Mirkina - Ph.D.(Eng.), associate professor.
Saratov
References
1. Grigorov M.S., Chumakova L.N. Maintenance of optimal soil-hydrologic conditions upon irrigation of dark chestnut soils in the Volga Region. Eurasian Soil Science. 2000. Vol. 33. N3. 308-310 (In English). EDN: LGHQPT.
2. Timoshkin O.A. Competitive ability of alfalfa and brome in mixed crops when cultivated in the forest-steppe of the Middle Volga. International Agricultural Journal. 2023. N1(391). 80-84 (In Russian). DOI: 10.55186/25876740_2023_66_1_80.
3. Epifanova I.V Fodder productivity and energy efficiency of cultivation of alfalfa variegated in cover crops in the conditions of forest-steppe of the middle Volga region. Fodder production. 2024. N3. 9-16 (In Russian). DOI: 10.30906/1562-0417-2024-3-9-16.
4. Kalaida D.D., Vasilko V.P. Water-air regime under alfalfa of the 2nd year of life depending on agro-techniques of cultivation. Proceedings of the Kuban State Agrarian University. 2022. N96. 107-113 (In Russian). DOI: 10.21515/1999-1703-96-107-113.
5. Pchelkin V.V., Sukharev Y.I., Kuzina O.M., Vladimirov S.O. Total water consumption of alfalfa on sod-podzolic soils of watersheds of the Moscow region. Environmental management. 2020. N 1. 47-53 (In Russian). DOI: 10.34677/1997-6011/2020-1-47-54.
6. Chumakova L.N., Plotnikov D.V., Ishakov S.B. Determination of evaporation of forage crops by different methods. Bulletin of Saratov State Agrarian University named after N.I. Vavilov. 2012. N4. 36-39 (In Russian). EDN: OXBJPR.
7. Zatinatsky S.V., Pankova T. A., Shmagina E.Yu., Kochetkov A.V. Validation models in technical example of resource-saving models of water consumption). Internet journal Naukovedenie. 2014. N5(24). 49 (In Russian). EDN: TKELUP
8. Pankova T. A., Kravchuk A.V., Orlova S. S., Mikheeva O.V., Mirkina E.N. Adaptive irrigation rationing. Environmental management. 2023. N2. 28-35 (In Russian). DOI: 10.26897/1997-6011-2023-2-28-35.
9. Konieva G.N., Dzhirgalova E.A., Batyrov B.A., Orosov C.A. Optimization of water supply and mineral nutrition forage crops. Irrigated Agriculture. 2023. N2(41). 41-44 (In Russian). DOI: 10.35809/2618-8279-2023-2-3.
10. Olgarenko V.I., Olgarenko I.V., Semenenko S.Ya., Olgarenko V.I. Structure formation of moisture exchange in the aeration zone of an irrigated field in presence of a capillary fringe in soil thickness. Land Reclamation and Hydraulic Engineering. 2023. N3 (13). 1-16 (In Russian). DOI: 10.31774/2712-9357-2023-13-3-1-16.
11. Zatinatsky S.V., Pankova T.A. Resource-saving mathematical model of irrigation rationing. Scientific Review. 2013. N11. 10-12 (In Russian). EDN: RWISXB.
12. Cheremisinov A.A., Cheremisinov A.Yu. Review of calculating methods for evapotranspiration of irrigated fields. Scientific Journal of the Russian Research Institute of Land Reclamation Problems. 2016. N1 (21). 113-133 (In Russian). EDN: VQUGID.
13. Solovyev D.A., Kamyshova G.N., Kolganov D.A., Terekhova N.N. Improving irrigation efficiency based on introducing of digital models for forecasting water consumption. Izvestiya Nizhnevolzhskogo agro-university complex: science and higher professional education. 2020. N4(60). 402-414 (In Russian). DOI: 10.32786/2071-9485-2020-04-38.
14. Cao X., Li H., Zheng H., Wang J. et al. Effects of subsurface drip irrigation on water consumption and yields of alfalfa under different water and fertilizer conditions. Journal of Sensors. 2021. 6617437 (In English). DOI: 10.1155/2021/6617437.
15. Abdrazakov F.K., Pankova T.A., Zatinatsky S.V. et al. Increasing efficiency of water resources use in forage crops irrigation. International Journal of Advanced Biotechnology and Research. 2017. Vol.8. N1. 283-293 (In English). EDN: ZGTLHB.
Review
For citations:
Pankova T.A., Kravchuk A.V., Orlova S.S., Mikheeva O.V., Mirkina E.N. Total Water Consumption of Alfalfa as a Function of Active Soil Surface and Bioclimatic Coefficients. Agricultural Machinery and Technologies. 2024;18(4):49-54. (In Russ.) https://doi.org/10.22314/2073-7599-2024-18-4-49-54. EDN: MYAXCJ