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Change in Yields of Cereal Crops in European Russia Caused by the Quasi-Biennial Oscillation of Atmospheric Processes

https://doi.org/10.15356/0373-2444-2016-2-90-99

Abstract

The objective of work is to study the influence of quasi-biennial oscillation of atmospheric processes on precipitation and frequency of the spring-summer drought against the background of the statistics of cyclonic and anticyclonic activity in different phases of the quasi-biennial oscillation and, consequently, on the yield of wheat in the European part of Russia. The area of the study is the grain zone of European Russia including the North Caucasus, Central Chernozem zone, Volga region and Southern Urals. The timeseries of values of speed and direction of zonal wind on an isobaric surface of 30 hPa for the period 1953–2011 was accepted as data characterizing the “classical” quasi-biennial (Data of Free University of Berlin, https://climatedataguide.ucar.edu). Decadic precipitation totals, indices of PDSI and SPI, snow depth in March, the frequency of centers of cyclones during the period of vegetation classified by phases of quasi-biennial. The increase of snow depth in March is revealed, as well as significant increase in precipitation and a reduction in the frequency of severe droughts in May associated with the intensification of cyclonic activity during the Western phase in relation to Eastern on a vast territory: the western region of Central Chernozem zone, Rostov region and Krasnodar krai. As a result of changing agro-climatic conditions depending on the phase of the quasi-biennial in the territory, it is found a significant excess of productivity of spring wheat during the Western phase against the Eastern phase. The yield of winter wheat was less sensitive to the quasi-biennial. The results of the study can be used to adequately address the problem of increasing the sustainability of harvests in Russia (improvement of agrometeorological practice, including prognostic aspects, and agroinsurance).

About the Authors

A. N. Zolotokrylin
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


E. A. Cherenkova
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


T. B. Titkova
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


A. Yu. Mikhailov
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


M. Yu. Bardin
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


A. V. Shiryaeva
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


V. V. Vinogradova
Institute of Geography Russian Academy of Sciences
Russian Federation
Moscow


References

1. Золотокрылин А.Н. Изменчивость урожайности пшеницы на европейской части СССР в условиях квазидвухлетней цикличности атмосферных процессов // Изв. АН СССР. Сер. геогр. 1985. № 2. С. 59–67.

2. Золотокрылин А.Н., Савина С.С., Хмелевская Л.В., Климакова Е.И. Реакция урожайности зерновых на короткопериодную изменчивость климата // Изв. АН СССР. Сер. геогр. 1990. № 5. С. 53–66.

3. Колосков П.И. Климатический фактор сельского хозяйства и климатическое районирование. Л.: Гидрометеоиздат, 1971. 327 с.

4. Обухов А.М., Курганский М.В., Татарская М.С. Динамические условия возникновения засух и других крупномасштабных погодных аномалий // Метеорология и гидрология. 1984. № 10. С. 5–13.

5. Пасов В.М. О двухлетней цикличности урожаев зерновых культур // Метеорология и гидрология. 1974. № 11. С. 63–65.

6. Черенкова Е.А., Бардин М.Ю., Золотокрылин А.Н. Статистика осадков и засух в противоположные фазы квазидвухлетней цикличности атмосферных процессов и ее связь с урожайностью в европейской части РФ // Метеорология и гидрология. 2015. № 3. С. 23–35.

7. Bradzil B. and Zolotokrylin A.N. The QBO Signal in Monthly Precipitation Fields over Europe // Theor. Appl.Climat. 1995. Vol. 51. P. 3–12.

8. Cherenkova E., Semenova I., Bardin M., and Zolotokrylin A. Drought and Grain Yields over the East European Plain under Influence of Quasibiennial Oscillation of Global Atmospheric Processes // International Journal of Atmospheric Sciences. 2015. ID 932474.

9. Dai A., Trenberth K.E., and Qian T. A global dataset of Palmer Drought Severity Index for 1870–2002: Relationship with soil moisture and effects of surface warming // J. Hydrometeorol. 2004. Vol. 5. P. 1117–1130.

10. Kalnay E., Kanamitsu M., Kistler R., Collins W., Deaven D., Gandin L., Iredell M., Saha S., White G., Woollen J., Zhu Y., Leetmaa A., Reynolds R., Chelliah M., Ebisuzaki W., Higgins W., Janowiak J., Mo K. C., Ropelewski C., Wang J., Jenne R., and Joseph D. The NCEP/NCAR 40-Year Reanalysis Project // Bull. Amer. Meteor. Soc. 1996. Vol. 77. PP. 437–471.

11. Thom H.C.S. Some Methods of Climatological Analysis, WMO Technical Note Number 81, Secretariat of the World Meteorological Organization, Geneva, Switzarland, 1966. 53 p.

12. Thornthwaite C.W. An approach toward a rational classification of climate // Geogr. Rev. 1948. Vol. 38. P. 55–94.


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For citations:


Zolotokrylin A.N., Cherenkova E.A., Titkova T.B., Mikhailov A.Yu., Bardin M.Yu., Shiryaeva A.V., Vinogradova V.V. Change in Yields of Cereal Crops in European Russia Caused by the Quasi-Biennial Oscillation of Atmospheric Processes. Izvestiya Rossiiskoi Akademii Nauk. Seriya Geograficheskaya. 2016;(2):90-99. (In Russ.) https://doi.org/10.15356/0373-2444-2016-2-90-99

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