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Walter, Rachel M.
[Verfasser:in];
Sayani, Hussein R.
[Verfasser:in];
Felis, Thomas
[Verfasser:in];
Cobb, Kim M.
[Verfasser:in];
Abram, Nerille J.
[Verfasser:in];
Arzey, Ariella K.
[Verfasser:in];
Atwood, Alyssa R.
[Verfasser:in];
Brenner, Logan D.
[Verfasser:in];
Dassié, Émilie P.
[Verfasser:in];
DeLong, Kristine L.
[Verfasser:in];
Eliis, Bethany
[Verfasser:in];
Emile-Geay, Julien
[Verfasser:in];
Fischer, Matthew J.
[Verfasser:in];
Goodkin, Nathalie F.
[Verfasser:in];
Hargreaves, Jessica A.
[Verfasser:in];
Kilbourne, K. Hailmeda
[Verfasser:in];
Krawczyk, Hedwig
[Verfasser:in];
McKay, Nicholas P.
[Verfasser:in];
Moore, Andrea L.
[Verfasser:in];
Murty, Sujata A.
[Verfasser:in];
Ong, Maria Rosabelle
[Verfasser:in];
Ramos, Riovie D.
[Verfasser:in];
Reed, Emma V.
[Verfasser:in];
Samanta, Dhrubajyoti
[Verfasser:in];
[...]
The CoralHydro2k database
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- Medientyp: E-Artikel
- Titel: The CoralHydro2k database : a global, actively curated compilation of coral δ18O and Sr ∕ Ca proxy records of tropical ocean hydrology and temperature for the Common Era
- Beteiligte: Walter, Rachel M. [Verfasser:in]; Sayani, Hussein R. [Verfasser:in]; Felis, Thomas [Verfasser:in]; Cobb, Kim M. [Verfasser:in]; Abram, Nerille J. [Verfasser:in]; Arzey, Ariella K. [Verfasser:in]; Atwood, Alyssa R. [Verfasser:in]; Brenner, Logan D. [Verfasser:in]; Dassié, Émilie P. [Verfasser:in]; DeLong, Kristine L. [Verfasser:in]; Eliis, Bethany [Verfasser:in]; Emile-Geay, Julien [Verfasser:in]; Fischer, Matthew J. [Verfasser:in]; Goodkin, Nathalie F. [Verfasser:in]; Hargreaves, Jessica A. [Verfasser:in]; Kilbourne, K. Hailmeda [Verfasser:in]; Krawczyk, Hedwig [Verfasser:in]; McKay, Nicholas P. [Verfasser:in]; Moore, Andrea L. [Verfasser:in]; Murty, Sujata A. [Verfasser:in]; Ong, Maria Rosabelle [Verfasser:in]; Ramos, Riovie D. [Verfasser:in]; Reed, Emma V. [Verfasser:in]; Samanta, Dhrubajyoti [Verfasser:in]; Sanchez, Sara C. [Verfasser:in]; Zinke, Jens [Verfasser:in]
-
Erschienen:
2023
- Erschienen in: Earth system science data ; 15(2023), 5, Seite 2081–2116
- Sprache: Englisch
- DOI: 10.5194/essd-15-2081-2023
- Identifikator:
- Entstehung:
- Anmerkungen:
- Beschreibung: The response of the hydrological cycle to anthropogenic climate change, especially across the tropical oceans, remains poorly understood due to the scarcity of long instrumental temperature and hydrological records. Massive shallow-water corals are ideally suited to reconstructing past oceanic variability as they are widely distributed across the tropics, rapidly deposit calcium carbonate skeletons that continuously record ambient environmental conditions, and can be sampled at monthly to annual resolution. Climate reconstructions based on corals primarily use the stable oxygen isotope composition (δ18O), which acts as a proxy for sea surface temperature (SST), and the oxygen isotope composition of seawater (δ18Osw), a measure of hydrological variability. Increasingly, coral δ18O time series are paired with time series of strontium-to-calcium ratios (), a proxy for SST, from the same coral to quantify temperature and δ18Osw variability through time. To increase the utility of such reconstructions, we present the CoralHydro2k database, a compilation of published, peer-reviewed coral and δ18O records from the Common Era (CE). The database contains 54 paired –δ18O records and 125 unpaired or δ18O records, with 88 % of these records providing data coverage from 1800 CE to the present. A quality-controlled set of metadata with standardized vocabulary and units accompanies each record, informing the use of the database. The CoralHydro2k database tracks large-scale temperature and hydrological variability. As such, it is well-suited for investigations of past climate variability, comparisons with climate model simulations including isotope-enabled models, and application in paleodata-assimilation projects. The CoralHydro2k database is available in Linked Paleo Data (LiPD) format with serializations in MATLAB, R, and Python and can be downloaded from the NOAA National Center for Environmental Information's Paleoclimate Data Archive at https://doi.org/10.25921/yp94-v135 [Titel anhand dieser DOI in Citavi-Projekt übernehmen] (Walter et al., 2022).
- Zugangsstatus: Freier Zugang