The possibilities of GIS technologies for assessing and monitoring the climatic conditions of the Makazhoy Fepression (Chechen Republic, Russia)
https://doi.org/10.18470/1992-1098-2024-2-14
Abstract
Modeling based on a digital relief model of the spatiotemporal change in the amount of total solar radiation and the assessment of the contribution of locations to the distribution of meteorological elements.
DEM analysis was conducted in a GIS environment to assess the spatial and temporal distribution of total solar radiation, and statistical analysis of retrospective climatic and actual (2023) meteorological data was conducted.
Based on a digital model of the relief of average spatial resolution in a GIS environment, changes in the spatial and temporal magnitude of solar radiation were estimated. A prospective analysis of climatic conditions made it possible to assess the general features of the climate of the Makazhoy basin Field observations made it possible to characterize modern climatic conditions, as well as to calculate gradients.
Depending on the locations, it was determined that the amount of total solar radiation in the Makazhoy basin varies by almost 3 times. Within the same altitude intervals, the difference between the slopes of the southern and northern exposures reaches up to 50 %. The smallest differences in the amount of radiation were observed on the days of the summer solstice, and the largest on the days of the winter solstice. The average annual air temperature in the altitude range of 1960–2264 m in 2023 varied from 8.6 to 5.8°, and the amount of precipitation – from 481 to 525 mm, respectively. The intra‐annual course of meteorological parameters (air temperature and leaf surface, precipitation and relative humidity) within the meteorological transect has been revealed. The data obtained make it possible to proceed to the formation of a GIS system for monitoring the climatic conditions of the carbon landfill of the Kadyrov Chechen State University.
Keywords
About the Authors
V. V. BratkovRussian Federation
Vitaly V. Bratkov
R. H. Bekmurzaeva
Russian Federation
Rashia H. Bekmurzaeva, Candidate of Economic Sciences, Associate Professor, Department of Ecology and Nature Management
32a Sheripova St, Grozny, 364024
Tel. +79290005504
L. R. Bekmurzaeva
Russian Federation
Luiza R. Bekmurzaeva
References
1. Solntsev N.A. Relationships between “living” and “dead” nature. Vestnik Moskovskogo universiteta. Seriya Geografiya [Bulletin of Moscow University. Geography Series]. 1960, no. 6, pp. 7–11. (In Russian)
2. Kondrat'ev K.Ya., Pivovarova Z.I., Fedorov M.P. Radiatsionnyi rezhim naklonnykh poverkhnostei [Radiation regime of inclined surfaces]. Leningrad, Gidrometizdat Publ., 1978, 215 p. (In Russian)
3. Yurenkov G.I. Osnovnye problemy fizicheskoi geografii i landshaftovedeniya: Uchebnoe posobie dlya geograficheskikh spetsial'nostei pedagogicheskikh instituvtov [Basic problems of physical geography and landscape science: Proc. manual for geographical specialties of pedagogical institutes]. Moscow, Vysshaya shkola Publ., 1982, 216 p. (In Russian)
4. Romanova E.N. Mikroklimaticheskaya izmenchivost' osnovnykh elementov klimata [Microclimatic variability of the main climate elements]. Leningrad, Gidrometizdat Publ., 1977. (In Russian)
5. AIRBUS 2020. Copernicus DEM: Copernicus digital elevation model product handbook Report AO/1-9422/18/I-LG (European Space Agency) (accessed 25.06.2020)
6. Neal J., Hawker L. 2023 FABDEM V1-2. https://doi.org/10.5523/bris.s5hqmjcdj8yo2ibzi9b4ew3sn
7. Pogoda i klimat [Weather and climate]. Available at: http://www.pogodaiklimat.ru/ (accessed 28.01.2024)
Review
For citations:
Bratkov V.V., Bekmurzaeva R.H., Bekmurzaeva L.R. The possibilities of GIS technologies for assessing and monitoring the climatic conditions of the Makazhoy Fepression (Chechen Republic, Russia). South of Russia: ecology, development. 2024;19(2):160-169. (In Russ.) https://doi.org/10.18470/1992-1098-2024-2-14