Universal thermal climate index in Russia

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The paper uses the universal thermal climate index (UTCI) to estimate the bioclimate in Russia, initiated by the Commission of the International society of Biometeorology. The UTCI index can be described as equivalent environment temperature (°C), which provides the same physiological impact on humans as the actual environment. Assessment of bioclimatic conditions is shown for the territory of Russia in the period of modern climate change (2001–2015). Cold stress conditions (from low to extreme) were observed in the almost all territory of Russia for about 8–11 months a year. During the rest of the year, the conditions are neutral or comfortable. The period of extreme and very high cold stress is reduced during the modern climate warming (compared to the period 1961–1990), especially in the Arctic, in the European part of Russia, in Western and Eastern Siberia. At the same time, the period with neutral and comfortable thermal conditions increases.

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V. Vinogradova

Institute of Geography, Russian Academy of Sciences

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Email: vvvinog@yandex.ru
俄罗斯联邦, 29, Staromonetny, Moscow, 119017

参考

  1. Arсhive of VNIIGMI-MTsD. Available at: http://www.meteo.ru (accessed 10.01.2019).
  2. Vinogradova V.V., Zolotokrylin A.N. Present and expected role of climatic factor in the estimation of natural conditions of life in Russia. Izv. Akad. Nauk, Ser. Geogr., 2014, no. 4, pp. 16–21. (In Russ.).
  3. Vtoroi otsenochnyi doklad Rosgidrometa ob izmeneniyakh klimata i ikh posledstviyakh na territorii Rossiiskoi Federatsii [Second Roshydromet Assessment Report on Climate Changes and its Consequences in Russian Federation]. Moscow: Rosgidromet, 2014. 1009 p.
  4. Zolotokrylin A.N., Krenke A.N., Vinogradova V.V. Raionirovanie Rossii po prirodnym usloviyam zhizni naseleniya [Zoning of Russia by Natural Conditions of Life]. Moscow: Geos Publ., 2012. 156 p.
  5. Błażejczyk K. BioKlima (version 2.6), software package. Available at: https://www.igipz.pan.pl/bioklima.html (accessed 10.01.2019).
  6. Błażejczyk K., Bröde P., Fiala D., Havenith G., Holmér I., Jendritzky G., Kampmann B., Kunert A. Principles of the new Universal Thermal Climate Index (UTCI) and its application to bioclimatic research in European scale. Miscellanea Geographica, 2010, vol. 14, pp. 91–102.
  7. Błażejczyk K., Epstein Y., Jendritzky G., Staiger H., Tinz B. Comparison of UTCI to selected thermal indices. Int. J. Biometeorol., 2012, vol. 56, no. 3, pp. 515–535.
  8. Błażejczyk K., Jendritzky G., Bröde P., Fiala D., Havenith G., Epstein Y., Psikuta A., Kampmann B. An introduction to the Universal Thermal Climate Index (UTCI). Geographia Polonica, 2013, vol. 86, no. 1, pp. 5–10.
  9. Bröde P., Fiala D., Blazejczyk K., Holmér I., Jendritzky G., Kampmann B., Tinz B., Havenith G. Deriving the operational procedure for the Universal Thermal Climate Index UTCI. Int. J. Biometeorol., 2012, vol. 56, no. 3, pp. 481–494.
  10. Fiala D., Havenith G., Bröde P., Kampmann B., Jendritzky G. UTCI-Fiala multi-node model human heat transfer and thermal comfort. Int. J. Biometeorol., 2012, vol. 56, no. 3, pp. 429–441.
  11. Di Napoli C., Pappenberger F., Hannah L.C. Assessing heat-related health risk in Europe via the Universal Thermal Climate Index (UTCI). Int. J. Biometeorol., 2018, vol. 62, no. 7, pp. 1155–1165.
  12. Jendritzky G., de Dear R., Havenith G. UTCI – why another thermal index? Int. J. Biometeorol., 2012, vol. 56, no. 3, pp. 421–428.
  13. Jendritzky G., Havenith G., Weihs P., Batchvarova E. Towards a Universal Thermal Climate Index UTCI for Assessing the Thermal Environment of the Human Being. Final Report COST Action 730. 2009.
  14. Pappenberger F., Jendritzky G., Staiger H., Dutra E., Di Giuseppe F., Richardson D.S., Cloke H.L. Global forecasting of thermal health hazards: the skill of probabilistic predictions of the Universal Thermal Climate Index (UTCI). Int. J. Biometeorol., 2015, vol. 59, no. 3, pp. 311–323.

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