Russian Federation
Russian Federation
Russian Federation
Russian Federation
UDC 332.3
UDC 332.54
The article is devoted to the analysis of remote sensing of the earth to determine the value of the environmental indicator of the territory (SFP) of the municipality. The relevance of the work is expressed in the need to obtain information in order to further manage the development of the territory, based on the reliability and detail of the information received, with the help of which short-term or long-term goals of managing the development of the land fund of municipalities are achieved. In the course of the study, the authors use a combination of procedures for decoding satellite images and calculation procedures for calculating the vegetation index, on the basis of which the boundaries and types of agricultural land are determined in order to solve problems of monitoring and assessing the condition of these objects. The application of the developed methodology ensures the rapid receipt of the necessary data and significantly speeds up the assessment process of the studied area. The authors obtained a set of results for calculating and analyzing the value of the SFP of the territory, in particular, the algorithm for determining the environmental indicator of the territory of the territory in relation to the territory of the municipality and the calculation method, the results of experimental calculation of the potential for the territories of representative municipalities of the Tyumen region. The definition of the environmental potential provides an assessment of the state of the land in terms of reflecting dynamic data on the increase or decrease in the value of this indicator, which is at the same time an indicator capable of integrating a set of indicators of the state and quality of the territory's lands and reflecting them in land management, urban planning decisions and territorial planning.
the environment-forming indicator of the territory, lands, agricultural lands, remote sensing of the land, vegetation index, territory development management
1. Guzeva I.V., Chernyh E.G., Budarova V.A. Nekotorye problemy zemleustroystva kak sfery deyatel'nosti i veduschey otrasli nauki // Moskovskiy ekonomicheskiy zhurnal. 2019. № 10. S. 137-146. doi:https://doi.org/10.24411/2413-046X-2019-10082
2. Doklad «O sostoyanii i ispol'zovanii zemel' v Tyumenskoy oblasti v 2022 godu»: oficial'nyy sayt Rosreestra. URL: https://rosreestr.ru/site/activity/sostoyanie-zemel-rossii/gosudarstvennyy-natsionalnyy-doklad-o-sostoyanii-i-ispolzovanii-zemel-v-rossiyskoy-federatsii/ (data obrascheniya: 09.05.2024).
3. Sizov A.P. Ocenka sredoformiruyuschego potenciala territorii naselennyh punktov pri osuschestvlenii gosudarstvennogo monitoringa zemel' // Geodeziya i kartografiya. 2018 № 6. S. 43-50.
4. Ramos Aguila, L.C., Sánchez Moreano, J.P., Akutse, K.S., Bamisile, B.S., Liu, J., Haider, F.U., Ashraf, H.J., Wang, L. (2023). Comprehensive genome-wide identifi cation and expression profi ling of ADF gene family in Citrus sinensis, induced by endophytic colonization of Beauveria bassiana. Int J Biol Macromol., vol. 225, pp. 886-898. doi:https://doi.org/10.1016/j. ijbiomac.2022.11.153
5. Wilcken, C.F., Dal Pogetto, M.H. F.D.A., Lima, A.C. V., Soliman, E.P., Fernandes, B.V., da Silva, I.M., Zanuncio, A.J. V., Barbosa, L.R., Zanuncio, J.C. (2019). Chemical vs entomopathogenic control of Thaumastocoris peregrinus (Hemiptera: Thaumastocoridae) via aerial application in eucalyptus plantations. Sci. Rep., vol. 9, no. 1, p. 416. doi: 10.1038/ s41598-019-45802-y
6. Barra-Bucarei, L., France Iglesias, A., Gerding González, M., Silva Aguayo, G., Carrasco-Fernández, J., Castro, J.F., Ortiz Campos, J. (2019). Antifungal Activity of Beauveria bassiana Endophyte against Botrytis cinerea in Two Solanaceae Crops. Microorganisms, vol. 8, no. 1, p. 65. doi: https://doi.org/10.3390/microorganisms8010065
7. Foley, J.A., Defries, R., Asner, G.P., Barford, C., Bonan, G., Carpenter, S.R., Chapin, F.S., Coe, M.T., Daily, G.C., Gibbs, H.K. (2005). Global consequences of land use. Science, 309 (5734), 570.
8. Lambin, E.F., Turner, B.L., Geist, H.J., Agbola, S.B., Angelsen, A., Bruce, J.W., Coomes, O.T., Dirzo, R., Fischer, G., Folke, C., George, P.S., Homewood, K., Imbernon, J., Leemans, R., Li, X., Moran, E.F., Mortimore, M., Ramakrishnan, P.S., Richards, J.F., Skanes, H., Steff en W., Stone, G.D., Svedin, U., Veldkamp, T.A., Vogel, C., Xu, J. (2001). The causes of land-use and landcover change: moving beyond the myths. Glob. Environ. Change, 11 (4), 261.



