DETERMINATION OF HYDRAULIC PARAMETERS OF SOIL MOISTURE

Authors

  • Sarimsakov M.M Sarimsakov Maksudkhon Musinovich, Candidate of Agricultural Sciences, Senior Researcher, Tashkent Institute of Irrigation and Agricultural Mechanization Engineers, National Research University, Bukhara Institute of Natural Resources Management. Bukhara, Uzbekistan.
  • Sarimsakova M.S Sarimsakova Mukhayyokhon Sotvoldievna, independent researcher, junior researcher at the Research Institute of Soil Science and Agrochemistry of the Academy of Sciences of the Republic of Uzbekistan. Tashkent, Uzbekistan
  • Saidova G.K Gulzhamal Komilovna Saidova, Trainee Teacher, Tashkent Institute of Irrigation and Agricultural Mechanization Engineers, National Research University, Bukhara Institute of Natural Resources Management. Bukhara, Uzbekistan
  • Ravshanov U.X Ravshanov Umid.Xalil o’g’li Trainee Teacher, Tashkent Institute of Irrigation and Agricultural Mechanization Engineers, National Research University, Bukhara Institute of Natural Resources Management. Bukhara, Uzbekistan

Keywords:

Intensive apple orchards, irrigation methods, depth of soil moistening, mathematical model of mass migration

Abstract

One of the most important tasks in the conditions of our republic is the application of methods for determining the dynamics of soil moisture during drip irrigation of agricultural crops in order to mitigate the negative effects of water scarcity and efficient use of water resources, the development of elements of irrigation procedures and irrigation methods appropriate to soil conditions, as well as the improvement of existing ones

References

Mirziyoyev, S. M. (2017). The rule of law and human interests ensuring the development of the country and the well-being of the people. "Uzbekistan".

Mirziyoyev, S. M. (2017). On the strategy of actions for the five priority directions of the development of the Republic of Uzbekistan in 2017-2021. The word of the Nation (The People's Word) on, (28), 6692.

Khamidov, F. R., Imamov, S. J., Abdisamatov, O. S., Sarmisakov, M. M., Ibragimova, G. K., & Kurbanova, K. I. (2020). Optimization of agricultural land in land equipment projects. Journal of Critical Reviews, 7(11), 1021-1023.

Sarimsakov Maksudkhon Musinovich, Kimsanov Ibrahim Khaitmuratovich, & Umarova Zulaykho Tulkunovna. (2021). Application Of Water-Saving Technologies In Gardening Uzbekistan. The American Journal of Agriculture and Biomedical Engineering, 3(08), 1–8. https://doi.org/10.37547/tajabe/Volume 03 Issue 08-01

Wilson, I., Harvey, S., Vankeisbelk, R., & Samad, A. (2001). Enabling the construction virtual enterprise: The OSMOS approach. In Itkon.

Silaev, A. A., Chesnokov, A.V. Pershin, E. G. (2021). Water purification for drip irrigation systems of greenhouses. Studnet, 4(6), 864-874.

Kirsch, Y. E., & Timashev, S. F. (1991). Physico-chemical aspects of the functioning and design of reverse osmosis membranes. Journal of Physical Chemistry, 65(9-12), 2469.

Maksimenko, V. P., & Zaitsev, S. A. (2011). Regulation of irrigation water quality in irrigation systems. Nature management, (5).

Morozov, V. A. (2012). Methods for solving incorrectly possessions. Springer Science & Business Media.

Gorsky, A., Krichevsky, I., Marshakov, A., Mironov, A., & Morozov, A. (1995). Integrability and Seiberg-Witten exact solution. Physics Letters B, 355 (3-4), 466-474.

Shumakova, K. B., & Burmistrova, A. Yu (2013). Formation of apple saplings (malus Domesticus Borch.) in conditions of different soil moisture availability with drip irrigation in the Moscow region. Proceedings of the Timiryazev Agricultural Academy, (1).

Shuravilin, A.V., Borodichev, V. V., & Krivolusky, A. A. (2012). The effect of drip irrigation regime on the growth and fruiting of apple trees in an intensive type garden. Bulletin of the Peoples' Friendship University of Russia. Series: Agronomy and Animal Husbandry, (4).

Bales, K., Kowalski, P., Fletcher, J., & Waite, T. D. (2019). Low cost desalination of brackish groundwaters by capacitive Deionization (CDI)–Implications for irrigated agriculture. Desalination, 453, 37-53.

MO, Ya, Wang, Ya, Yang, R., Jeng, J., Liu, K., Li, H., ... & Jang, H. (2016). Plant growth regulation, photosynthesis, antioxidation and osmosis B arbuscular mycorrhizal fungus in Watermelon seedlings under well-watered and dried conditions. Frontiers in Plant Science, 7, 644.

Khamidov, F. R., Imamov, S. J., Abdisamatov, O. S., Sarmisakov, M. M., Ibragimova, G. K., & Kurbanova, K. I. (2020). Optimization of agricultural land in land equipment projects. Journal of Critical Reviews, 7(11), 1021-1023.

Sarimsakov M.M., Ibragimova H.R. Technical irrigation elements of intensive apple orchards in Uzbekistan. Agrarian science. 2018;(6):66-67. (In Russ.)

Musinovich, S. M. (2021). Determination of Soil Moisturization Dynamics Four Factor Experience. Journal of Marketing and Emerging Economics, 1 (6), 81-88.

Bandurin, M. A., Yurchenko, I. F., Volosukhin, V. A., Vanzha, V. V., & Mikheyev, A. V. (2018, December). The efficiency of impervious protection of hydraulic structures of irrigation systems. In International scientific and practical conference" Agro-SMART-Smart solutions for agriculture"(Agro-SMART 2018) (pp. 56-61). Atlantis Press.

Adrien van Gelder, Ralph van Gelder, Gerald Gunther. Corneliu Eftodi, edited by Nadirbek Kachkinbaev. (2016). “My profitable farm”. Bishkek. M-Maxima. 311 p.

Terenko G.N. (2013). Determination of the equivalent moisture capacity of the soil. Scientific works of the State National University. North Caucasian Research Institute of Horticulture and Viticulture. Krasnodar. Vol. 3. 79 p.

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Published

2022-10-20

How to Cite

Sarimsakov M.M, Sarimsakova M.S, Saidova G.K, & Ravshanov U.X. (2022). DETERMINATION OF HYDRAULIC PARAMETERS OF SOIL MOISTURE. European Journal of Research Development and Sustainability, 3(10), 46-52. Retrieved from https://scholarzest.com/index.php/ejrds/article/view/2829

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