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Abstract: Many maps of open water and wetland have been developed based on three main methods: (i) compiling national/regional wetland surveys; (ii) identifying inundated areas by satellite imagery; (iii) delineating wetlands as shallow water table areas based on groundwater modelling. The resulting global wetland extents, however, vary from 3 to 21% of the land surface area, because of inconsistencies in wetland definitions and limitations in observation or modelling systems. To reconcile these differences, we propose composite wetland (CW) maps combining two classes of wetlands: (1) regularly flooded wetlands (RFW) which are obtained by overlapping selected open-water and inundation datasets; (2) groundwater-driven wetlands (GDW) derived from groundwater modelling (either direct or simplified using several variants of the topographic index). Wetlands are thus statically defined as areas with persistent near saturated soil because of regular flooding or shallow groundwater. To explore the uncertainty of the proposed data fusion, seven CW maps were generated at the 15 arc-sec resolution (ca 500 m at the Equator) using geographic information system (GIS) tools, by combining one RFW and different GDW maps. They correspond to contemporary potential wetlands, i.e. the expected wetlands assuming no human influence under the present climate. To validate the approach, these CW maps were compared to existing wetland datasets at the global and regional scales: the spatial patterns are decently captured, but the wetland extents are difficult to assess against the dispersion of the validation datasets. Compared to the only regional dataset encompassing both GDWs and RFWs, over France, the CW maps perform well and better than all other considered global wetland datasets. Two CW maps, showing the best overall match with the available evaluation datasets, are eventually selected. They give a global wetland extent of 27.5 and 29 million km, i.e. 21.1 and 21.6% of global land area, which is among the highest values in the literature, in line with recent estimates also recognizing the contribution of GDWs. This wetland class covers 15% of global land area, against 9.7% for RFWs (with an overlap ca 3.4 %), including wetlands under canopy/cloud cover leading to high wetland densities in the tropics, and small scattered wetlands, which cover less than 5% of land but are very important for hydrological and ecological functioning in temperate to arid areas. By distinguishing the RFWs and GDWs globally based on uniform principles, the proposed dataset is believed to be useful for large-scale land surface modelling (hydrological, ecological and biogeochemical modelling) and environmental planning.Techical Information: Three global wetland maps at 15" resolution (~500 m at the Equator) are presented named:(1) regularly flooded wetlands (RFW),(2) composite wetland based on direct GW modelling (CW-WTD),(3) Composite wetland map based on topo-climate index (CW-TCI15%).
Citation
Title Multi-source global wetland maps combining surface water imagery and groundwater constraints
publication  Date   2018
cited responsible party - author
individual Name Tootchi, Ardalan
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cited responsible party - author
individual Name Jost, Anne
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cited responsible party - author
individual Name Ducharne, Agn s
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cited responsible party - distributor
individual Name Sorbonne Universit , Paris, France
position Name HostingInstitution
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cited responsible party - publisher
organisation Name  PANGAEA - Data Publisher for Earth & Environmental Science
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dataCentre Keywords
PANGAEA - Data Publisher for Earth & Environmental Science
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Title Science Domain > Earth Science
publication  Date   2018-11-29
other Citation Details  Cinergi keyword enhanced.File generated at Thu Nov 29 01:18:03 UTC 2018
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Title Realm > Geosphere
publication  Date   2018-11-29
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Title Method > information processing
publication  Date   2018-11-29
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Title Process > Hydrologic Process
publication  Date   2018-11-29
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Title Material > Environmental Material
publication  Date   2018-11-29
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Title Realm > Earth Surface
publication  Date   2018-11-29
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Title Resource Type > Dataset
publication  Date   2018-11-29
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Title Realm > Planetary Structure
publication  Date   2018-11-29
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Title Activity > Observation
publication  Date   2018-11-29
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Title Feature > Marine Feature
publication  Date   2018-11-29
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Title Property > Measure
publication  Date   2018-11-29
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Title Organization > CONSORTIA/INSTITUTIONS
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Title Feature > Environmental Feature
publication  Date   2018-11-29
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Title Science Domain > Chemistry
publication  Date   2018-11-29
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Resource language:  eng
Resource progress code:  Complete
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Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
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Access Constraints  license
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Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
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Classification  unclassified
Format
Format name text/tab-separated-values
Format version
Resource extent
Resource extent
Extent description
France
Geographic Extent
Geographic Bounding Box
westBoundLongitude  -99.21693999999997
eastBoundLongitude  -99.20693999999997
northBoundLatitude  18.92875000000004
southBoundLatitude  18.918750000000042
point of contact - pointOfContact
individual Name Tootchi, Ardalan
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Digital Transfer Options
Linkage for online resource
name Landing Page
URL:http://dx.doi.org/10.1594/PANGAEA.892657
protocol WWW:LINK-1.0-http--link
link function information
Description Link to DOI landing page or data facility landing page if no DOI is assigned.
Metadata data stamp:  2018-11-28T18:53:00.276Z
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notes: This metadata record was generated by an xslt transformation from a DataCite metadata record; The transform was created by Damian Ulbricht and Stephen M. Richard. 2017-11-15 these records include new IEDA keywords for geoportal facets Run on 2018-11-28T18:53:00.276Z
Metadata contact - pointOfContact
organisation Name  Interdisciplinary Earth Data Alliance
Contact information
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electronic Mail Addressdatadiscoverystudio@gmail.com
Linkage for online resource
URL:https://www.earthcube.org/sites/default/files/doc-repository/logo_earthcube_cube-only_SMALL.png
link function browseGraphic
Metadata scope code  dataset
Metadata hierarchy level name:  Dataset
Metadata language  eng
Metadata character set encoding:   utf8
Metadata standard for this record:  ISO 19139 Geographic Information - Metadata - Implementation Specification
standard version:  2007
Metadata record identifier:  urn:datacite:metadata:Multi-source-global-wetland-maps-combining-surface-water-imagery-and-groundwater-constraints

Metadata record format is ISO19139-2 XML (MI_Metadata)