Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL

Dynamics of global wetlands are closely linked to biodiversity conservation, hydrology, and greenhouse gas emissions. However, long-term time series of global wetland products are still lacking. Using a diagnostic model based on the TOPography-based hydrological MODEL (TOPMODEL), this study produced...

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Autores principales: Xi, Y., Peng, S., Ducharne, A., Ciais, Philippe, Gumbricht, Thomas, Jimenez, C., Poulter, B., Prigent, C., Qiu, C., Saunois, M., Zhang, Z.
Formato: Journal Article
Lenguaje:Inglés
Publicado: Springer 2022
Materias:
Acceso en línea:https://hdl.handle.net/10568/120561
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author Xi, Y.
Peng, S.
Ducharne, A.
Ciais, Philippe
Gumbricht, Thomas
Jimenez, C.
Poulter, B.
Prigent, C.
Qiu, C.
Saunois, M.
Zhang, Z.
author_browse Ciais, Philippe
Ducharne, A.
Gumbricht, Thomas
Jimenez, C.
Peng, S.
Poulter, B.
Prigent, C.
Qiu, C.
Saunois, M.
Xi, Y.
Zhang, Z.
author_facet Xi, Y.
Peng, S.
Ducharne, A.
Ciais, Philippe
Gumbricht, Thomas
Jimenez, C.
Poulter, B.
Prigent, C.
Qiu, C.
Saunois, M.
Zhang, Z.
author_sort Xi, Y.
collection Repository of Agricultural Research Outputs (CGSpace)
description Dynamics of global wetlands are closely linked to biodiversity conservation, hydrology, and greenhouse gas emissions. However, long-term time series of global wetland products are still lacking. Using a diagnostic model based on the TOPography-based hydrological MODEL (TOPMODEL), this study produced an ensemble of 28 gridded maps of monthly global/regional wetland extents (with more reliable estimates at mid-low latitudes) for 1980–2020 at 0.25° × 0.25° spatial resolution, calibrated with a combination of four observation-based wetland data and seven gridded soil moisture reanalysis datasets. The gridded dynamic maps of wetlands capture the spatial distributions, seasonal cycles, and interannual variabilities of observed wetland extent well, and also show a good agreement with independent satellite-based terrestrial water storage estimates over wetland areas. The long temporal coverage extending beyond the era of satellite datasets, the global coverage, and the opportunity to provide real-time updates from ongoing soil moisture data make these products helpful for various applications such as analyzing the wetland-related methane emission.
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spelling CGSpace1205612024-03-06T10:16:43Z Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL Xi, Y. Peng, S. Ducharne, A. Ciais, Philippe Gumbricht, Thomas Jimenez, C. Poulter, B. Prigent, C. Qiu, C. Saunois, M. Zhang, Z. wetlands hydrology spatial analysis satellite imagery remote sensing Dynamics of global wetlands are closely linked to biodiversity conservation, hydrology, and greenhouse gas emissions. However, long-term time series of global wetland products are still lacking. Using a diagnostic model based on the TOPography-based hydrological MODEL (TOPMODEL), this study produced an ensemble of 28 gridded maps of monthly global/regional wetland extents (with more reliable estimates at mid-low latitudes) for 1980–2020 at 0.25° × 0.25° spatial resolution, calibrated with a combination of four observation-based wetland data and seven gridded soil moisture reanalysis datasets. The gridded dynamic maps of wetlands capture the spatial distributions, seasonal cycles, and interannual variabilities of observed wetland extent well, and also show a good agreement with independent satellite-based terrestrial water storage estimates over wetland areas. The long temporal coverage extending beyond the era of satellite datasets, the global coverage, and the opportunity to provide real-time updates from ongoing soil moisture data make these products helpful for various applications such as analyzing the wetland-related methane emission. 2022-06-18 2022-08-18T03:18:27Z 2022-08-18T03:18:27Z Journal Article https://hdl.handle.net/10568/120561 en Open Access Springer Xi, Y., Peng, S., Ducharne, A., Ciais, P., Gumbricht, T., Jimenez, C., Poulter, B., Prigent, C., Qiu, C., Saunois, M. and Zhang, Z. 2022. Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL. Scientific Data 9(1): 347. https://doi.org/10.1038/s41597-022-01460-w
spellingShingle wetlands
hydrology
spatial analysis
satellite imagery
remote sensing
Xi, Y.
Peng, S.
Ducharne, A.
Ciais, Philippe
Gumbricht, Thomas
Jimenez, C.
Poulter, B.
Prigent, C.
Qiu, C.
Saunois, M.
Zhang, Z.
Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL
title Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL
title_full Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL
title_fullStr Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL
title_full_unstemmed Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL
title_short Gridded maps of wetlands dynamics over mid-low latitudes for 1980–2020 based on TOPMODEL
title_sort gridded maps of wetlands dynamics over mid low latitudes for 1980 2020 based on topmodel
topic wetlands
hydrology
spatial analysis
satellite imagery
remote sensing
url https://hdl.handle.net/10568/120561
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