Results of the sensitivity experiments LOVECLIM as NetCDF files

Fuente: PANGAEA
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Autori principali: Bakker, Pepijn, Renssen, Hans
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2013
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author Bakker, Pepijn
Renssen, Hans
author_facet Bakker, Pepijn
Renssen, Hans
collection Datos científicos de ciencias marinas y ambientales
contents Several abrupt climatic events during the present interglacial have been associated with catastrophic freshwater forcing, such as the events at 9.2and 8.2 ka BP (Alley et al., 1997; Barber et al., 1999; Marshall et al. 2007; Fleitmann et al. 2008). Proxy evidence suggests that similar events may have occurred during the last interglacial (e.g., Beets & Beets 2003; Beets et al., 2006), suggesting that freshwater‐induced perturbations are an important mechanism for abrupt climate change in interglacial climates. In addition solar variability (Neff et al., 2001; Wang et al., 2005) and explosive volcanic eruptions (Crowley, 2000; Shindell et al., 2003; Jansen et al., 2007) can trigger centennial‐scale climate events during interglacials and may thus have been responsible for a part of interglacial climate variability. We investigate the sensitivity of the present and last interglacial climates to realistic perturbations resulting from freshwater, solar or volcanic forcings. We will compare the differences between the two interglacial periods, between different climate models and evaluate the resulting using proxy archives.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_823321
institution PANGAEA
language en
publishDate 2013
publisher PANGAEA
record_format pangaea
spellingShingle Results of the sensitivity experiments LOVECLIM as NetCDF files
Bakker, Pepijn
Renssen, Hans
-; Climate Change: Learning from the past climate; File format; File name; File size; Past4Future; Uniform resource locator/link to file; Unit; Variable
Several abrupt climatic events during the present interglacial have been associated with catastrophic freshwater forcing, such as the events at 9.2and 8.2 ka BP (Alley et al., 1997; Barber et al., 1999; Marshall et al. 2007; Fleitmann et al. 2008). Proxy evidence suggests that similar events may have occurred during the last interglacial (e.g., Beets & Beets 2003; Beets et al., 2006), suggesting that freshwater‐induced perturbations are an important mechanism for abrupt climate change in interglacial climates. In addition solar variability (Neff et al., 2001; Wang et al., 2005) and explosive volcanic eruptions (Crowley, 2000; Shindell et al., 2003; Jansen et al., 2007) can trigger centennial‐scale climate events during interglacials and may thus have been responsible for a part of interglacial climate variability. We investigate the sensitivity of the present and last interglacial climates to realistic perturbations resulting from freshwater, solar or volcanic forcings. We will compare the differences between the two interglacial periods, between different climate models and evaluate the resulting using proxy archives.
title Results of the sensitivity experiments LOVECLIM as NetCDF files
topic -; Climate Change: Learning from the past climate; File format; File name; File size; Past4Future; Uniform resource locator/link to file; Unit; Variable
url https://doi.org/10.1594/PANGAEA.823321