P.P.SHIRSHOV INSTITUTE OF OCEANOLOGY

Sea Atmosphere Interaction And Climate Laboratory



Атлас
экстремального
волнения
GLOBAL
WAVE
ATLAS
Southern Hemisphere
cyclone tracks
1948-2006
Zveryaev Igor
leading research scientist

2021

Igor I. Zveryaev & Abdel A. Hannachi Summertime variability of Mediterranean evaporation: competing impacts from the mid latitudes teleconnections and the South Asian monsoon Theoretical and Applied Climatology, https://doi.org/10.1007/s00704-021-03577-1

2019

Zveryaev I.I., Arkhipkin A.V. Variability and Changes of the Growing Season Length and Frost Days Number in Russian sub-Arctic. GEOGRAPHY, ENVIRONMENT, SUSTAINABILITY. 2019;12(1):13-22. https://doi.org/10.24057/2071-9388-2018-55

Yulia. A. Zyulyaeva, Joshua H.P. Studholme, and Igor I. Zveryaev Long-Term Changes in Wintertime Temperature Extremes in Moscow and their Relation to Regional Atmospheric Dynamics Journal of Geophysical Research: Atmospheres, 124, 92–109. https://doi. org/10.1029/2018JD028642

2017

Zveryaev I.I., and Arkhipkin A.V. Interannual variability of soil moisture in the European part of Russia in summer Russian Meteorology and Hydrology, 2017, Vol. 42, No. 3, pp. 198–203. Allerton Press, Inc., 2017.

2016

Zyulyaeva Y.A., I.I. Zveryaev, and K.P. Koltermann Observations-based analysis of the summer temperature extremes in Moscow. Int. J. Climatol., doi: 10.1002/joc.4370

Zveryaev, I.I., M. Zahn, and R.P. Allan Interannual variability in the summertime hydrological cycle over European regions. J. Geophys. Res.- Atmospheres, 121, doi:10.1002/2015JD024425.

Zveryaev, I.I., and A.A. Hannachi Interdecadal changes in the links between Mediterranean evaporation and regional atmospheric dynamics during extended cold season. Int. J. Climatol., doi: 10.1002/joc.4779.

2015

Zveryaev, I.I. Seasonal differences in intraseasonal and interannual variability of Mediterranean Sea surface temperature. J. Geophys. Res.- Oceans, 120, 2813-2825, doi:10.1002/2014JC010387.

2012

Zveryaev, I.I., and A.A. Hannachi Interannual variability of Mediterranean evaporation and its relation to regional climate Clim. Dyn., doi: 10.1007/s00382-011-1218-7

2011

Allan R.P., and Zveryaev I.I. Variability in the summer season hydrological cycle over the Atlantic-Europe region 1979-2007. Int. J. Climatol., 31: 337-348.

2010

Zveryaev I.I., and R.P. Allan Summertime Precipitation Variability over Europe and its Links to Atmospheric Dynamics and Evaporation. J. Geophys. Res.-Atmos., 115, D12102, doi: 10.1029/2008JD011213

Zveryaev I.I., and Rudeva I.A. Intraseasonal non-stationarity of the leading modes of atmospheric moisture over Europe during summer. Climate Dynamics, 2009, DOI 10.1007/s00382-009-0701-x

2009

Zveryaev, I.I. Interannual and intraseasonal variability in the boreal summer Asian monsoon before and after climate regime shift of mid 1970’s as revealed in the NCEP/NCAR reanalysis. In: Ocean circulation and El Nino: New research (Eds. J.A. Long, D.S. Wells) Nova Science Publishers, Hauppauge, NY, 253-264.

Zveryaev, I.I. and S. K. Gulev Seasonality in secular changes and interannual variability of european air temperature during the twentieth century. JOURNAL OF GEOPHYSICAL RESEARCH, VOL. 114, D02110, 2009, doi:10.1029/2008JD010624, 2009

Zveryaev, I.I. Interdecadal changes in the links between European precipitation and atmospheric circulation during boreal spring and fall. Tellus, 2009, 61A, 50-56

2008

И.И. Зверяев, А.В. Архипкин Структура климатической изменчивости температуры поверхности Средиземного моря. Часть II: Главные моды изменчивости Метеорология и Гидрология, 2008, N7, 58-66.

И.И. Зверяев, А.В. Архипкин Структура климатической изменчивости температуры поверхности Средиземного моря. Часть I: Стандартные отклонения и линейные тренды Метеорология и Гидрология, 2008, N6, 55-64.

Zveryaev, I.I., Wibig, J., and R.P. Allan Contrasting Interannual variability of Atmospheric Moisture over Europe during Cold and Warm Seasons Tellus, 2008, 60A, 32-41.

2007

И.И. Зверяев Климатология и изменчивость годового хода температуры воздуха над Европой Метеорология и Гидрология, N 7, с. 18-24.

2006

Igor I. Zveryaev Seasonally varying modes in long-term variability of European precipitation during the 20th century. JOURNAL OF GEOPHYSICAL RESEARCH, VOL. 111, D21116, doi:10.1029/2005JD006821, 2006

2005

Igor I. Zveryaev, Richard P. Allan Water vapor variability in the tropics and its links to dynamics and precipitation. JOURNAL OF GEOPHYSICAL RESEARCH, VOL. 110, D21112

2004

IGOR I. ZVERYAEV , MARINA P. ALEKSANDROVA DIFFERENCES IN RAINFALL VARIABILITY IN THE SOUTH ANDSOUTHEAST ASIAN SUMMER MONSOONS. Int. J. Climatol. 24: 1091–1107 (2004)

Zveryaev, I.I. Seasonality in precipitation variability over Europe. J. Geophys. Res., 109, D05103.1-D05103.16

2003
2002
2001

IGOR M. YASHAYAEVa, IGOR I. ZVERYAEVb CLIMATE OF THE SEASONAL CYCLE IN THE NORTH PACIFIC ANDTHE NORTH ATLANTIC OCEANS. Int. J. Climatol. 21: 401–417 (2001)

2000

Zveryaev I.I. Decade-to-century-scale climate variability and change: A science strategy (book review) Int. J. Climatol., 20, 933.

IGOR I. ZVERYAEV, KONSTANTIN M. SELEMENOV DECADAL SCALE CHANGES IN THE ANNUAL CYCLE OF THE NORTH PACIFIC SEA-SURFACE TEMPERATURE. Int. J. Climatol. 20: 1639–1651 (2000)

1999
in the agenda
IMILAST – establishing more truth in numerical cyclone tracking

SAIL/IORAS together with as many as 12 other groups around the world started a project focused on the development of comprehensive intercomparison and validation of numerical schemes for tracking cyclones.

Surface energy fluxes and climate science: A concept paper of Sergey Gulev, Chris Fairall and Vladimir Riabinin (towards the JSC-29 meeting)

Better climate observation and prediction can only be achieved if we minimize the uncertainties of the global energy balance and increase the accuracy of the estimation of variability of air-sea fluxes on all time scales.
Full text (PDF)

More of MORE: "Polarstern" covers Capetown-Europe section with a joint German-Russian radiation team onboard

During 20+ days from 12 April 2007 to 5 May 2007 German research icebreaker Polarstern with chief scientist Andreas Macke and our team member Alexey Sinitsyn onboard measured radiation at sea surface under the MORE (Meridional Oceanic Radiation Experiment). This is the 6th in the series of MORE cruises.

NEMO-based DRAKKAR Global Ocean hindcast at eddy-permitting resolution

DRAKKAR community has compiled the pilot hindcast of the World Ocean circulation in eddy-permitting resolution using DRAKKAR hierarchy of OGCMs based on the NEMO system.

SINGAPORE: SMALL ISLAND AND BIG CLIMATE ISSUES: Local downscaling of climate change is on the way

In April 2007 we started the regional climate downscaling project, targeted at sea level and ocean wind wave extremes for Singapore - one of the Asian hi-tech and financial capitals. This small 24-months project is funded by the Tropical Marine Science Institute of the National University of Singapore

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