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Atmospheric effects in Scotland of the AD 1783–84 Laki eruption in Iceland

Dados Bibliográficos

ID12264993
AutoresAlastair G Dawson (0000-0003-4220-9921, University of Dundee, autor correspondente), Martin P Kirkbride (0000-0002-7108-4382, University of Dundee), Harriet Cole (University of Aberdeen)
Ano2021
Volume31
Fascículo5
Páginas830-843
Data de publicação2021-01-28
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoThe Holocene (JOURNAL)
Identificadores do periódicoISSN: 0959-6836 • E-ISSN: 1477-0911
EditoraSAGE Publishing (PUBLISHER • US)
DOI10.1177/0959683620988052
OpenAlexW3124337805
IdiomaEN
Citações recebidas3
Referências citadas32

Daily weather diaries and meteorological records from Scotland reveal complex weather patterns following the 1783–84 fissure eruption of the Laki volcano, Iceland. Four diarists in eastern and northern Scotland describe the near-simultaneous occurrence of discrete groups of days characterised by ‘foggy’, ‘gloomy’ and ‘hazy’ conditions during June and July 1783. The weather records suggest that an ash-rich portion of the initial plume may have arrived synchronously across eastern Scotland on June 15th, 5 days after the first eruption in Iceland, and lingered for between 5 and 7 days. Following a 3-day interval of fine weather, a sulphurous haze arrived on June 24th and persisted for the rest of the summer. As the summer progressed air pollution episodes became shorter, less frequent and more influenced by air pressure fluctuations. The effect of the eruption on Scotland’s climate is unclear although a negative air temperature anomaly of 1.5°C to 2.5°C below the decadal average occurred in September 1783 lasting for 16 days at Dalkeith and 33 days at Fochabers. The 1783–84 winter in Scotland was one of the coldest in recent centuries and was accompanied by prolonged snow and frost through the first 4 months of 1784. During this period, temperatures in eastern Scotland averaged 2.0°C to 2.6°C below the decadal average. The duration and amplitude of post-eruption negative temperature anomalies appear to have been strongly associated with synoptic air pressure and wind flow patterns and not simply related to volcanically-forced cooling. This challenges the hypothesis that the Laki eruptions were responsible for the sustained lowering of air temperatures over the three successive winters of 1783–84, 1784–85 and 1785–86

Anomaly (physics · Archaeology · Climatology · East Asia · Geography · Period (music · Siberian High · Volcano · Warm front · Climate variability and models · Environmental Science · Geology and Paleoclimatology Research · Tree-ring climate responses · Geology · Oceanography

  • What a Winter it Was”

    Skafti Ingimarsson•Scandinavian Journal of History•2024

  • In Memoriam

    Open Access•Pedro Costa, Pedro J M Costa et al.•The Holocene•2025

  • Disparate impacts of the Eldgjá and Laki flood-lava eruptions

    Open Access•Conner A G Morison, Clive Oppenheimer et al.•The Holocene•2024

  • Central England temperatures

    Open Access•Gordon Manley•Quarterly Journal of the Royal…•1974

  • Eruptions that Shook the World

    Open Access•Clive Oppenheimer•Eruptions That Shook the World•2011

  • Non-climatic factors and the environmental impact of volcanic volatiles

    Open Access•John Grattan, D J Charman•The Holocene•1994

  • An Amazing and Portentous Summer

    John Grattan, Mark Brayshay•Geographical Journal•1995

Obras citantes distintas3
Citações por ano1,5
Intervalo de citações2024 - 2025 (2)
Velocidade de citaçãorecent
Altamente citadoNão
Tipos de citaçãoNeutras: 3
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