Trends of Variation in the Thermal Regime in Arid and Adjacent Areas in the European Part of Russia in Summer

Arid Ecosystems - Tập 11 - Trang 319-326 - 2021
L. M. Akimov1
1Voronezh State University, Voronezh, Russia

Tóm tắt

This paper presents the results of an analysis of trends in variation in the mean monthly air temperature in arid lands in the European part of Russia and adjacent areas in summer; the direction of these trends and the rate of temperature changes in the second half of the 20th and early 21st centuries are estimated. The regional features of the thermal regime in the European part of Russia (EPR) have been studied against the background of global climate change. The latitudinal and longitudinal quantitative indicators of changes in the thermal regime, including their spatial distribution in the study area, are estimated. A significant increase in the air temperature has been recorded in the arid lands of Russia, where the trend in the temperature increase (0.066°C over the 10 years) is much higher than the values obtained from assessment reports.

Tài liệu tham khảo

Akimov, L.M. and Zadorozhnaya, T.N., Analysis of long-term temperature dynamics to develop an ultra-long-term forecast, Vestn. Voronezh. Gos. Univ., Ser. Geogr., Geoekol., 2014, no. 3, pp. 35–39. Akimov, L.M. and Zadorozhnaya, T.N., Specific distribution of air temperature trends in the European part of Russia and neighboring countries, Vestn. Voronezh. Gos. Univ., Ser. Geogr., Geoekol., 2018, no. 4, pp. 5–14. Akimov, L.M., Vladimirov, D.V., and Grigor’evskaya, A.Ya., Change of flora of meadow steppes of the Central Chernozem Region of Russia affected by the current climate conditions, Materialy Mezhdunarodnoi nauchnoi konfe-rentsii “Regional’nye effekty global’nykh izmerenii klimata (prichiny, posledstviya, prognozy)” (Proc. Int. Sci. Conf. “Regional Effects of Global Climate Change: Reasons, Consequences, and Forecasts”), Fedotov, V.I., Ed., Voronezh, 2012, pp. 275–278. Akimov, L.M., Zadorozhnaya, T.N., and Zakusilov, V.P., Climatic heterogeneity of spring air temperature in Eastern Europe, Vestn. Voronezh. Gos. Univ., Ser. Geogr., Geoekol., 2019, no. 1, pp. 29–38. Alekseev, G.V., Asarin, A.E., Balonishnikova, Zh.A., Bitkov, L.M., Bulygina, O.N., Bugrov, L.Yu., and Shchepashchenko, D.G., Vtoroi otsenochnyi doklad Rosgidrometa ob izmeneniyakh klimata i ikh posledstviyakh na territorii Rossiiskoi Federatsii (Second Assessment Report of Reosgidromet on Climate Changes and Their Consequences in Russian Federation), Moscow: Rosgridromet, 2014. Doklad o klimaticheskikh riskakh na territorii Rossiiskoi Federatsii (A Report on Climate Risks in Russian Federation), St. Petersburg, 2017. Doklad Rosgidrometa ob osobennostyakh klimata na territorii Rossiiskoi Federatsii za 2013 god (A Report of Rosgidromet on Specific Climate in Russian Federation in 2013), Moscow: Rosgridromet. 2014. Gruza, G.V. and Ran’kova, E.Ya., Probabilistic assessment of observed and expected climate changes in Russian Federation: air temperature, Probl. Ekol. Monit. Model. Ekosist., 2011, vol. 24, pp. 43–70. IPCC, Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge: Cambridge Univ. Press, 2007. IPCC, Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge: Cambridge Univ. Press, 2013. Ivanov, V.P., Marchenko, S.I., and Glazun, I.N., Changes in biogeocenoses of the central part of the Bryansk region after the summer heat of 2010, Vestn. Povolzh. Gos. Tekhnol. Univ., Les, Ekol., Prorodopol’z., 2013, no. 1, pp. 25–35. Izmen. Klim., 2016, no. 58, pp. 12–15. Fedotov, V.I., Uspenskii, K.V., Grigor’evskaya, A.Ya., and Fedotov, S.V., Response of landscape biota to enhancing climate change, Materialy Mezhdunarodnoi nauchno-prakticheskoi konferentsii posvyashchennoi 85-letiyu fakul’teta geografii, geoekologii i turizma VGU “Global’nye klimaticheskie izmeneniya: regional’nye effekty, modeli, prognozy” (Proc. Int. Sci.-Pract. Conf. Dedicated to the 85th Anniversary of the Faculty of Geography, Geoecology, and Tourism at the Voronezh State University “Global Climate Changes: Regional Effects, Models, and Forecasts”), Kurolap, S.A., Akimov, L.M., and Dmitrieva, V.A., Eds., Voronezh, 2019, pp. 13–19. Met Office, 2020. http://www.MetOffice.gov.uk. Accessed March 2, 2020. Morice, C.P., Kennedy, J.J., Rayner, N.A., and Jones, P.D., Quantifying uncertainties in global and regional temperature change using an ensemble of observational estimates: the HadCRUT4 dataset, J. Geophys. Res.: Atmos., 2012, vol. 117, no. 8, p. 8101. NCEP model analyses and forecasts, National Oceanic and Atmospheric Administration, 2020. https://crudata.uea.ac.uk/cru/data/ncep/ qs_eurasia/daily/sflux/air.2m/. Accessed March 2, 2020. Osborn, T., HadCRUT4 global temperature graphs administration, 2020. https://crudata.uea.ac.uk/~timo/diag/ tempdiag.htm. Accessed March 2, 2020. Otsenochnyi doklad ob izmeneniyakh klimata i ikh posledstviyakh na territorii Rossiiskoi Federatsii. Tom 1. Izmeneniya klimata (Assessment Report on Climate Changes and Their Consequences in Russian Federation, Vol. 1: Climate Change), Moscow: Rosgridromet. 2008. Platova, T.V., Climatic characteristics of some indicators of the extremeness of the surface air temperature and atmospheric precipitation in Russia, Ispol’z. Okhr. Prirod. Reusr. Ross., 2007, no. 1, pp. 38–47. Polyakova, G.A. and Melankholin, P.N., The impact of the 2010 drought on the grass and shrub cover of forests of Moscow oblast, Lesovedenie, 2013, no. 4, pp. 43–51. Shirnina, L.V., Transformation of pathological processes in forest plantations under climate change conditions, Materialy Mezhdunarodnoi nauchno-prakticheskoi konferentsii posvyashchennoi 85-letiyu fakul’teta geografii, geoekologii i turizma VGU “Global’nye klimaticheskie izmeneniya: regional’nye effekty, modeli, prognozy” (Proc. Int. Sci.-Pract. Conf. Dedicated to the 85th Anniversary of the Faculty of Geography, Geoecology, and Tourism at the Voronezh State University “Global Climate Changes: Regional Effects, Models, and Forecasts”), Kurolap, S.A., Akimov, L.M., and Dmitrieva, V.A., Eds., Voronezh, 2019, vol. 2, pp. 213–217. Solov’ev, A.N., Shikhova, T.G., and Busygin, E.I., Impact of weather and climatic anomalies of 2010 on plants in the middle latitudes of the east of the Russian Plain, Vestn. Udmurt. Univ., Ser. Biol., Nauki Zemle, 2011, no. 4, pp. 8–20. Sporyshev, P.V. and Kattsov, V.M., Spatiotemporal features of global warming, Dokl. Earth Sci., 2006, vol. 410, no. 7, pp. 1160–1165. University of East Anglia, Climatic Research Unit, 2020. http://www.cru.uea.ac.uk. Accessed March 2, 2020. Vaganov, E.A., Zolotokrylin, A.N., Pchelkin, A.V., Velichko, A.A., Gavrilo, M.V., Minin, A.A., Parfenova, E.I., Romanovskaya, A.A., Chebakova, N.M., and Golubev, A.V., Otsenochnyi doklad ob izmeneniyakh klimata i ikh posledstviyakh na territorii Rossiiskoi Federatsii. Tom 2. Posledstviya izmeneniya klimata (Assessment Report on Climate Changes and Their Consequences in Russian Federation, Vol. 2: Consequences of Climate Change), Moscow: Rosgridromet, 2014, pp. 242–255.