Estimated autumn precipitation anomalies in the Central Pyrenees between 1500 and 2002 CE, based on the varved sediments of Lake Montcortès

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Autores principales: Vegas-Vilarrúbia, Teresa, Corella, Juan Pablo, Sigro, Javier, Rull, Valentí, Dorado-Liñan, Isabel, Valero-Garcés, Blas L, Gutiérrez-Merino, Emilia
Formato: Dataset Open Access
Lenguaje:en
Publicado: PANGAEA 2022
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author Vegas-Vilarrúbia, Teresa
Corella, Juan Pablo
Sigro, Javier
Rull, Valentí
Dorado-Liñan, Isabel
Valero-Garcés, Blas L
Gutiérrez-Merino, Emilia
author_facet Vegas-Vilarrúbia, Teresa
Corella, Juan Pablo
Sigro, Javier
Rull, Valentí
Dorado-Liñan, Isabel
Valero-Garcés, Blas L
Gutiérrez-Merino, Emilia
collection Datos científicos de ciencias marinas y ambientales
contents The Mediterranean region is expected to be highly impacted by global warming. To better understand and predict shifts in its current climate system, climate time series covering seasonal-to-century scale climate variability are needed. Here we provide a dataset containing a high-resolution reconstruction of autumn precipitation variability for the Central Pyrenees that spans the 1500-2002 CE period. This dataset is based on calcite sublayer width of varved sediments of lake Montcortès. Sediment cores MON12-3A-1G and MON12-2A-1G were retrieved from the deepest basin of the lake. Large-scale thin sections of sediment (120 mm X 35 mm) were extracted and calcite varve sublaminae counted and characterised. The age-depth model was built by combining varve counting and radiometric dating (210Pb, 137Cs and 14C). Long-term trend of the raw calcite width series was removed with a low pass filter by fitting a cubic smoothing spline of 67% of the series length. To find out how well the smoothed calcite series and instrumental regional precipitation match up with each other, correlation and cross correlation methods were applied. Highest correlation values were obtained with autumn precipitation anomalies for the entire calibration period (1900-2002) and for the two halve subperiods (1910–1956 and 1957–2002). The applied statistical tests yield highly significant results. The obtained regression model explained 15.5% (R2-value for the full calibration period) of the September to November precipitation variability. The obtained transfer function allowed inferring past autumn precipitation from calcium carbonate sublayer thickness at annual resolution. The reconstructed series (PPT-SON) provides the first estimations of regional autumn precipitation shifts in the Central Pyrenees since 1500 CE.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_949593
institution PANGAEA
language en
publishDate 2022
publisher PANGAEA
record_format pangaea
spellingShingle Estimated autumn precipitation anomalies in the Central Pyrenees between 1500 and 2002 CE, based on the varved sediments of Lake Montcortès
Vegas-Vilarrúbia, Teresa
Corella, Juan Pablo
Sigro, Javier
Rull, Valentí
Dorado-Liñan, Isabel
Valero-Garcés, Blas L
Gutiérrez-Merino, Emilia
Age model, varve counting; Autumn precipitation; Calculated; Climate warming; Confidence interval lower limit; Confidence interval upper limit; DATE/TIME; Endogenic calcite; Little Ice Age; MON12-2A-1G; MON12-3A-1G; Precipitation anomaly, September-November; Precipitation reconstruction, transfer function-based approach; Ratio; SEDCO; Sediment corer; transfer function; Varve thickness, calcite sub-layer
The Mediterranean region is expected to be highly impacted by global warming. To better understand and predict shifts in its current climate system, climate time series covering seasonal-to-century scale climate variability are needed. Here we provide a dataset containing a high-resolution reconstruction of autumn precipitation variability for the Central Pyrenees that spans the 1500-2002 CE period. This dataset is based on calcite sublayer width of varved sediments of lake Montcortès. Sediment cores MON12-3A-1G and MON12-2A-1G were retrieved from the deepest basin of the lake. Large-scale thin sections of sediment (120 mm X 35 mm) were extracted and calcite varve sublaminae counted and characterised. The age-depth model was built by combining varve counting and radiometric dating (210Pb, 137Cs and 14C). Long-term trend of the raw calcite width series was removed with a low pass filter by fitting a cubic smoothing spline of 67% of the series length. To find out how well the smoothed calcite series and instrumental regional precipitation match up with each other, correlation and cross correlation methods were applied. Highest correlation values were obtained with autumn precipitation anomalies for the entire calibration period (1900-2002) and for the two halve subperiods (1910–1956 and 1957–2002). The applied statistical tests yield highly significant results. The obtained regression model explained 15.5% (R2-value for the full calibration period) of the September to November precipitation variability. The obtained transfer function allowed inferring past autumn precipitation from calcium carbonate sublayer thickness at annual resolution. The reconstructed series (PPT-SON) provides the first estimations of regional autumn precipitation shifts in the Central Pyrenees since 1500 CE.
title Estimated autumn precipitation anomalies in the Central Pyrenees between 1500 and 2002 CE, based on the varved sediments of Lake Montcortès
topic Age model, varve counting; Autumn precipitation; Calculated; Climate warming; Confidence interval lower limit; Confidence interval upper limit; DATE/TIME; Endogenic calcite; Little Ice Age; MON12-2A-1G; MON12-3A-1G; Precipitation anomaly, September-November; Precipitation reconstruction, transfer function-based approach; Ratio; SEDCO; Sediment corer; transfer function; Varve thickness, calcite sub-layer
url https://doi.org/10.1594/PANGAEA.949593