0000000000020849

AUTHOR

Joanna Wibig

0000-0002-8560-0325

showing 4 related works from this author

Recent Change—Atmosphere

2015

This chapter examines past and present studies of variability and changes in atmospheric variables within the North Sea region over the instrumental period; roughly the past 200 years. The variables addressed are large-scale circulation, pressure and wind, surface air temperature, precipitation and radiative properties (clouds, solar radiation, and sunshine duration). Temperature has increased everywhere in the North Sea region, especially in spring and in the north. Precipitation has increased in the north and decreased in the south. There has been a north-eastward shift in storm tracks, which agrees with climate model projections. Due to large internal variability, it is not clear which a…

geographygeography.geographical_feature_category010504 meteorology & atmospheric scienceseducationStorm010502 geochemistry & geophysicsAtmospheric sciences114 Physical sciences01 natural sciencesArctic ice packExtreme weather13. Climate actionNorth Atlantic oscillationClimatologySunshine durationClimate modelStorm trackPrecipitation0105 earth and related environmental sciences
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Past and Current Climate Change

2008

This section describes long-term observed climatic changes in atmospheric parameters. The focus is on surface climate conditions, but changes in atmospheric circulation are discussed as they often are behind climatic variability seen on regional and local scales. For a summary introduction on mean atmospheric states and conditions in the Baltic Sea Basin see Annex 1.2 with sections on the general atmospheric circulation (A.1.2.1), surface air temperature (A.1.2.2), precipitation (A.1.2.3), clouds (A.1.2.4), and global radiation (A.1.2.5).

Current (stream)Arctic oscillationNorth Atlantic oscillationAtmospheric circulationClimatologyWave heightClimate changeEnvironmental sciencePrecipitationStructural basin
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Long-term changes in drought indices in eastern and central Europe

2021

This study analyses long-term changes in drought indices (Standardised Precipitation Index—SPI, Standardised Precipitation–Evapotranspiration Index—SPEI) at 1 and 3?months scales at 182 stations in 11 central and eastern European countries during 1949–2018. For comparative purposes, the necessary atmospheric evaporative demand (AED) to obtain SPEI was calculated using two methods, Hargreaves-Samani (SPEIH) and Penman-Monteith (SPEIP). The results show some relevant changes and tendencies in the drought indices. Statistically significant increase in SPI and SPEI during the cold season (November–March), reflecting precipitation increase, was found in the northern part of the study region, in …

Atmospheric Science010504 meteorology & atmospheric sciencesCold season0207 environmental engineering02 engineering and technology01 natural sciencesEastern europeanSummer seasonTrend analysisGeographyWide area13. Climate actionClimatologyPrecipitation020701 environmental engineering0105 earth and related environmental sciences
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Recent Change—Atmosphere

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