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contributor authorAires, Filipe
contributor authorMiolane, Léo
contributor authorPrigent, Catherine
contributor authorPham, Binh
contributor authorFluet-Chouinard, Etienne
contributor authorLehner, Bernhard
contributor authorPapa, Fabrice
date accessioned2017-06-09T17:17:17Z
date available2017-06-09T17:17:17Z
date copyright2017/05/01
date issued2017
identifier issn1525-755X
identifier otherams-82448.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4225563
description abstractnew procedure is introduced to downscale low-spatial-resolution inundation extents from Global Inundation Extent from Multi-Satellites (GIEMS) to a 3-arc-s (90 m) dataset (known as GIEMS-D3). The methodology is based on topography and hydrography information from the HydroSHEDS database. A new floodability index is introduced and an innovative smoothing procedure is developed to ensure a smooth transition, in the high-resolution maps, between the low-resolution boxes from GIEMS. Topography information is pertinent for natural hydrology environments controlled by elevation but is more limited in human-modified basins. However, the proposed downscaling approach is compatible with forthcoming fusion of other, more pertinent satellite information in these difficult regions. The resulting GIEMS-D3 database is the only high-spatial-resolution inundation database available globally at a monthly time scale over the 1993?2007 period. GIEMS-D3 is assessed by analyzing its spatial and temporal variability and evaluated by comparisons to other independent satellite observations from visible (Google Earth and Landsat), infrared (MODIS), and active microwave (synthetic aperture radar).
publisherAmerican Meteorological Society
titleA Global Dynamic Long-Term Inundation Extent Dataset at High Spatial Resolution Derived through Downscaling of Satellite Observations
typeJournal Paper
journal volume18
journal issue5
journal titleJournal of Hydrometeorology
identifier doi10.1175/JHM-D-16-0155.1
journal fristpage1305
journal lastpage1325
treeJournal of Hydrometeorology:;2017:;Volume( 018 ):;issue: 005
contenttypeFulltext


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