Preview

Prirodoobustrojstvo

Advanced search

MODEL STUDY OF THE “HEAT ISLAND” EFFECT ON URBAN AREAS

https://doi.org/10.26897/1997-6011-2022-3-91-94

Abstract

The problem of further development of a statistical model for determining the assessment of the UHI effect (urban heat island) in urban areas containing canyons of various configurations is formulated and solved. A generalized total spatial indicator of the UHI effect is proposed. The functional relationship between the indicators of the proposed generalized. Oki model is investigated. The optimal relationship between the indicators of this model is determined, at which the total spatial index of the thermal island reaches an extremum. Based on the results obtained, a recommendation was developed for the optimal choice of indicators of the Oki model, i.e. the height and width of configurations of urban zones in the form of canyons.

About the Author

E. A. Mammadova
Institute for Space Research of Natural Resources of the National Aerospace Agency
Russian Federation


References

1. Oke T.R. The urban energy balance // Prog. Phys. Geogr. - 1988. - Vol. 12.

2. Souto J.I.O., Cohen J.C.P. Spatiotemporal variability of urban heat island: influence of urbanization on seasonal pattern of land surface temperature in the Metropolitan Region of Belem, Brazil // Revista Brasileira de Gestao Urbana. - 2021. - Vol. 13. E20200260. https://doi.org/10.1590/2175-3369.013.e20200260.

3. Listyawati R.N., Prasetiyo P. Analysis of urban heat island phenomenon as a global warming control based on remote sensing in Jember urban, Island // Earth and Environmental Science. - 2021. - Vol. 887. Doi: 10.1088/1755-1315/887/1/012002.

4. Gonzalez F.M.L., Navarro L.A.N., Caravantes R.E.D., Navarro-Estupinan J. Vegetation cover and urban heat islands/oases distribution in Hermosillo city, Sonora // International Journal of Borders. Territories and Regions. - 2021. Frontera Norte. - Vol. 33. -Art. 6

5. Oke T.R. The energetic basis of the urban heat island // Quart. J.R. Met. Soc. - January. - 1982. - Vol. 108. -№ 455. - Pp. 1-24.

6. Phelan P.E., Kaloush K., Miner M. et all. Urban heat Island: mechanisms, implications and possible remedies // Annual Review of Environmental Resources. - 2015. - Vol. 40. - Pp. 285-307.

7. Li Y., Schubert S., Kropp J.P. et all. On the influence of density and morphology on the urban heat island intensity. https://doi.org/10.1038/s41467-020-16461-9.

8. Roth M., Harindra J. Handbook of Environmental Fluid Dynamics. 2013. - Vol. 2 https://doi.org/10.1201/b13691

9. Oke T.R. City size and the urban heat island // Atmos. Environ. - 1973. - Vol. 7. - Pp. 769-779.

10. Эльсгольц Л.Э. Дифференциальные уравнения и вариационное исчисление. - М.: Наука, 1974. - 432 с. Elsgolcts L.E. Differentsialjnye uravneniya i va-riatsionnoe ischislenie. - M.: Nauka, 1974. - 432 s.

11. Urban Heat Islands. - URL: https://profile.nus.edu.sg/fass/geomr/roth%20uhi%20hefd13.pdf.


Review

For citations:


Mammadova E.A. MODEL STUDY OF THE “HEAT ISLAND” EFFECT ON URBAN AREAS. Prirodoobustrojstvo. 2022;(3):91-94. (In Russ.) https://doi.org/10.26897/1997-6011-2022-3-91-94

Views: 97


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1997-6011 (Print)