Vol. 27, issue 03, article # 7

Krutikov V. A., Kataev S. G., Tartakovsky V. A., Kuskov A. I., Ivanova E. V. Method of allocation of structures as means of increasing connectivity of regional and global temperature fields. // Optika Atmosfery i Okeana. 2014. V. 27. No. 03. P. 224-231 [in Russian].
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Abstract:

In this paper to investigate the structure and dynamics of temperature fields of the different spatial and temporal scale, the structure selection methods was applied. For the study, the monthly mean air temperature of 249 stations in northern Eurasia during the period 1955–2010 were involved. The fields of the average monthly temperature for each calendar month were classified. The average temperature in the annual behaviour have been built. The study revealed that structures with large areas are allocated, within which formed pockets of air masses of different origin are formed. Centers of origin of air masses, uniform temperature field and contrasting transitional zone between them are refined.

Keywords:

temperature field, the decomposition into components, structure, connectivity

References:

1. Drozdov O.A. O principah racionalizacii seti meteorologicheskih stancij // Tr. GGO. 1961. Iss. 123. P. 33–46.
2. Drozdov O.A., Shepelevskij A.A. Teorija interpoljacii v stohasticheskom pole meteorologicheskih jelementov i ee primenenie k voprosam meteorologicheskih kart i racionalizacii seti // Tr. NIU GUGMS. 1946. Ser. 1. Iss. 13. P. 65–115.
3. Gandin L.S., Kagan R.L., Tarakanova V.P. K voprosu o racional'nom planirovanii seti nabljudenij za temperaturoj vozduha // Tr. GGO. 1968. Iss. 228. P. 30–40.
4. Meshherskaja A.V. K uchetu nestacionarnosti temperatury v statisticheskih razrabotkah // Primenenie statisticheskih metodov v meteorologi. L.: Gidrometeoizdat, 1971. P. 164–170.
5. Zheltaja N.N. O prostranstvennoj izmenchivosti srednej dekadnoj temperatury vozduha v teplyj period goda // Tr. GMC. 1971. Iss. 85. P. 47–56.
6. Lugina K.M., Melashenko L.Ja. Prostranstvennaja korreljacija anomalij temperatury vozduha i ispol'zovanie ee pri racionalizacii seti stancij // Tr. GGO. 1972. Iss. 286. P. 26–38.
7. Lugina K.M., Tarakanova V.P. Prostranstvennaja struktura polja srednej mesjachnoj temperatury // Issledovanie statisticheskoj struktury meteorologicheskih polej. V. 1. M.: Gidrometeoizdat, 1975. P. 73–79.
8. Kataev S.G., Kataev M.Ju. Matematicheskij formalizm i algoritm strukturirovanija mnogomernyh dannyh // Polzunovskij vestn. 2012. N 2/1. P. 99–103.
9. Kataev S.G., Kataev M.Ju. Matematicheskij metod i algoritm szhatija mnogomernyh vremennyh rjadov // Dokl. TUSUR. 2012. V. 1(25). Pt. 2. Tomsk: OOO «Izd-vo V-Spektr». P. 208–2013.
10. Krutikov V.A., Tartakovskij V.A., Kuskov A.I., Ivanova Je.V. O svjaznosti regional'nyh i global'nyh polej temperatury nad aziatskoj territoriej Rossii // Optika atmosf. i okeana. 2012. V. 25, N 2. P. 117–121.
11. Krutikov V.A., Kuskov A.I., Tartakovskij V.A., Ivanova Je.V. Osnovnye statisticheskie harakteristiki teplovogo polja temperatury v prizemnom sloe atmosfery nad territorijami Rossii i sopredel'nyh gosudarstv // Optika atmosf. i okeana. 2013. V. 26, N 2. P. 108–112.
12. Tissen A.H. Precipitation averages for large areas // Month. Weat. Rev. 1911. V. 39, N 7. P. 1082–1084.
13. Kagan R.L. O redukcii meteorologicheskih jelementov po ploshhadi // Primenenie statisticheskih metodov v meteorologii. L.: Gidrometeoizdat, 1966. P. 22–34.
14. Kagan R.L. Osrednenie meteorologicheskih polej. L.: Gidrometeoizdat, 1979. 214 p.
15. Akin J.E. Calculation of mean areal depth of precipitation // J. Hydrol. 1971. V. 12, N 4. P. 363–368.
16. Alisov B.P. Klimat SSSR. M.: Izdatelstvo Mosk. universiteta, 1956. 125 p.
17. Ljubushkina S.G. Obshhee zemlevedenie: Uch. posobie dlja studentov vuzov, obuchajushhihsja po spec. «Geografija» / S.G. Ljubushkina, K.V. Pashkang, A.V. Chernov; Pod red. A.V. Chernova. M.: Prosveshhenie, 2004. 288 p.