# Circum-North Atlantic Area Air Temperature Reconstructions Derived from Tree-ring Maximum Latewood Density Data from 760 to 2017 CE #----------------------------------------------------------------------- # World Data Service for Paleoclimatology, Boulder # and # NOAA Paleoclimatology Program #----------------------------------------------------------------------- # Template Version 4.0 # Encoding: UTF-8 # NOTE: Please cite original publication, NOAA Landing Page URL, dataset and publication DOIs (where available), and date accessed when using downloaded data. # If there is no publication information, please cite investigator, study title, NOAA Landing Page URL, and date accessed. # # Description/Documentation lines begin with '#' followed by a space # Data lines have no '#' # # NOAA_Landing_Page: https://www.ncei.noaa.gov/access/paleo-search/study/38080 # Landing_Page_Description: NOAA Landing Page of this file's parent study, which includes all study metadata. # # Study_Level_JSON_Metadata: https://www.ncei.noaa.gov/pub/data/metadata/published/paleo/json/noaa-recon-38080.json # Study_Level_JSON_Description: JSON metadata of this data file's parent study, which includes all study metadata. # # Data_Type: Climate Reconstructions # # Dataset_DOI: 10.25921/tsdv-n421 # # Science_Keywords: Air Temperature Reconstruction #--------------------------------------- # Resource_Links # # Data_Download_Resource: https://www.ncei.noaa.gov/pub/data/paleo/reconstructions/wang2023/wang2023-ecan_temprecon.txt # Data_Download_Description: NOAA Template File; Air Temperature Data # # Related_Online_Resource: https://www.ncei.noaa.gov/pub/data/paleo/reconstructions/wang2023/wang2023-RecordsUsed_Metadata.txt # Data_Download_Description: NOAA Template File; Records Used Metadata Table # #--------------------------------------- # Contribution_Date # Date: 2023-05-15 #--------------------------------------- # File_Last_Modified_Date # Date: 2023-08-14 #--------------------------------------- # Title # Study_Name: Circum-North Atlantic Area Air Temperature Reconstructions Derived from Tree-ring Maximum Latewood Density Data from 760 to 2017 CE #--------------------------------------- # Investigators # Investigators: Wang, Feng; Arseneault, Dominique; Boucher, Etienne; Gennaretti, Fabio #--------------------------------------- # Description_Notes_and_Keywords # Description: Millennial May–August temperature reconstructions using tree-ring maximum latewood density data for Eastern Canada, Northern and Central Europe. #--------------------------------------- # Publication # Authors: Feng Wang, Dominique Arseneualt, Etienne Boucher, Fabio Gennaretti, Francois Lapointe, Shulong Yu, Pierre Francus # Published_Date_or_Year: 2023-09-01 # Published_Title: Volcanic imprints in last-millennium land summer temperatures in the circum-North Atlantic area # Journal_Name: Journal of Climate # Volume: 36 # Edition: # Issue: 17 # Pages: 5923–5939 # Report_Number: # DOI: 10.1175/JCLI-D-23-0107.1 # Online_Resource: # Full_Citation: # Abstract: Summer cooling is one of the most direct consequences of explosive volcanic eruptions that can affect ecosystems and human societies. Recent studies revealed a multi-year cooling impact on hemispheric and global summer temperatures after tropical eruptions, yet, the volcanic responses appear to vary on regional scales. Here, we revisit volcano-induced summer cooling in Eastern Canada, Northern and Central Europe by applying superposed epoch analysis on CMIP6-PMIP4 simulations and millennial temperature reconstructions based on tree-ring density. We then examine potential causes modulating region-specific volcanic impact. While confirming that, on average, tropical eruptions over the last millennium have induced a longer cooling (> 4 years) than eruptions from extratropical Northern Hemisphere in all three North Atlantic regions, we show that the peak magnitude of cooling is stronger in Eastern Canada. We also find that the detected volcanic temperature anomalies can be strongly affected by the selection and number of volcanic events and non-volcanic signals embedded in the climate time series. This study highlights the risks of using highly noisy proxy records to investigate volcanic impacts, especially in regions with strong unforced climate variability. The CMIP6-PMIP4 simulations generally agree with the three reconstructions on the average response to tropical eruptions, but their performance is poorer regarding the production of significant cooling after extratropical eruptions. Our results further suggest that the particular sensitivity to tropical eruptions in Eastern Canada is likely related to increased sea ice surrounding Quebec-Labrador associated with the positive Arctic Oscillation and North Atlantic Oscillation formed during the first post-eruption winter. #--------------------------------------- # Funding_Agency # Funding_Agency_Name: # Grant: #--------------------------------------- # Site_Information # Site_Name: Eastern Canadian Region # Location: Canada # Northernmost_Latitude: 60 # Southernmost_Latitude: 50 # Easternmost_Longitude: -65 # Westernmost_Longitude: -77 # Elevation_m: #--------------------------------------- # Data_Collection # Collection_Name: ECanTempRecon # First_Year: -1178 # Last_Year: 67 # Time_Unit: year Common Era # Core_Length_m: # Parameter_Keywords: air temperature # Notes: The Eastern Canada reconstruction is another version of the D-STREC reconstruction by Wang et al. 2022 and is based on power-transformed residual chronologies of maximum latewood density data used in Wang et al. 2022. #--------------------------------------- # Chronology_Information # Chronology: #--------------------------------------- # Variables # PaST_Thesaurus_Download_Resource: https://www.ncei.noaa.gov/access/paleo-search/skos/past-thesaurus.rdf # PaST_Thesaurus_Download_Description: Paleoenvironmental Standard Terms (PaST) Thesaurus terms, definitions, and relationships in SKOS format. # # Data variables follow that are preceded by "##" in columns one and two. # Variables list, one per line, shortname-tab-var components: what, material, error, units, seasonality, data type, detail, method, C or N for Character or Numeric data) # ## Year age,,,year Common Era,,tree ring;climate reconstructions,,,N, ## Rec_ECan surface air temperature,ring density,,degree Celsius,May-Aug,tree ring;climate reconstructions,anomalized,Bayesian inference,N,reference period: 1951-1980 CE Reconstruction for Eastern Canada ## CI1_lower surface 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1.182479 1925 -0.44811 -1.39023 0.494008 1926 -0.44811 -1.39023 0.494008 1927 -0.73799 -1.68011 0.204126 1928 0.349067 -0.59305 1.291184 1929 -1.02787 -1.96999 -0.08576 1930 0.131655 -0.81046 1.073773 1931 -0.12199 -1.02787 0.820126 1932 0.349067 -0.59305 1.291184 1933 -1.20905 -2.15117 -0.26693 1934 -1.82505 -2.8034 -0.88293 1935 0.820126 -0.12199 1.762243 1936 -1.17282 -2.11493 -0.2307 1937 0.892596 -0.04952 1.834714 1938 0.312831 -0.62929 1.254949 1939 0.022949 -0.91917 0.965067 1940 -0.01329 -0.91917 0.928831 1941 -0.52058 -1.4627 0.421537 1942 0.131655 -0.81046 1.073773 1943 -0.3394 -1.28152 0.602714 1944 -0.15823 -1.10035 0.78389 1945 -0.3394 -1.28152 0.602714 1946 -0.52058 -1.4627 0.457773 1947 -1.10035 -2.04246 -0.19446 1948 0.638949 -0.30317 1.581067 1949 0.240361 -0.66552 1.182479 1950 0.131655 -0.81046 1.073773 1951 0.059184 -0.8467 1.001302 1952 0.457773 -0.48435 1.39989 1953 0.602714 -0.3394 1.544832 1954 1.472361 0.566478 2.414479 1955 0.602714 -0.3394 1.544832 1956 -2.33235 -3.27446 -1.39023 1957 -0.41187 -1.35399 0.530243 1958 -0.44811 -1.39023 0.494008 1959 0.566478 -0.3394 1.508596 1960 0.421537 -0.52058 1.32742 1961 0.566478 -0.37564 1.508596 1962 0.204126 -0.70176 1.146243 1963 -0.3394 -1.28152 0.602714 1964 0.530243 -0.41187 1.472361 1965 -1.31776 -2.25987 -0.37564 1966 0.928831 -0.01329 1.870949 1967 -0.08576 -1.06411 0.856361 1968 -0.9554 -1.89752 -0.04952 1969 -1.4627 -2.40482 -0.52058 1970 0.421537 -0.52058 1.363655 1971 -0.88293 -1.82505 0.059184 1972 -0.99164 -1.93376 -0.04952 1973 0.78389 -0.15823 1.726008 1974 0.022949 -0.91917 0.965067 1975 0.530243 -0.44811 1.472361 1976 -0.19446 -1.13658 0.747655 1977 0.276596 -0.66552 1.182479 1978 -0.77423 -1.71635 0.204126 1979 0.638949 -0.30317 1.581067 1980 1.110008 0.16789 2.052126 1981 0.276596 -0.62929 1.218714 1982 -0.73799 -1.68011 0.204126 1983 0.602714 -0.3394 1.544832 1984 0.385302 -0.55682 1.291184 1985 0.71142 -0.2307 1.617302 1986 0.421537 -0.52058 1.363655 1987 0.240361 -0.70176 1.182479 1988 0.675184 -0.26693 1.617302 1989 -0.37564 -1.31776 0.566478 1990 0.421537 -0.73799 1.544832 1991 -0.01329 -1.17282 1.110008 1992 -0.66552 -1.78882 0.457773 1993 0.820126 -0.30317 1.94342 1994 -0.88293 -2.00623 0.276596 1995 0.494008 -0.62929 1.617302 1996 -0.15823 -1.28152 1.001302 1997 0.022949 -1.10035 1.110008 1998 0.566478 -0.55682 1.689773 1999 0.204126 -0.91917 1.32742 2000 0.530243 -0.59305 1.653537 2001 1.001302 -0.12199 2.124596 2002 0.09542 -1.02787 1.218714 2003 1.472361 0.349067 2.595655 2004 -0.8467 -1.96999 0.276596 2005 1.39989 0.312831 2.523185 2006 1.39989 0.276596 2.523185 2007 0.965067 -0.15823 2.088361 2008 1.544832 0.457773 2.668126 2009 0.131655 -1.13658 1.39989 2010 0.856361 -0.37564 2.124596 2011 1.110008 -0.12199 2.342008 2012 0.530243 -0.73799 1.762243 2013 0.747655 -0.52058 1.979655 2014 0.78389 -0.44811 2.01589 2015 0.530243 -0.73799 1.798479 2016 1.037537 -0.2307 2.305773 2017 0.131655 -1.31776 1.581067