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MERIT Hydro: A High‐Resolution Global Hydrography Map Based on Latest Topography Dataset

Water Resources Research · 2019 · Vol. 55(6) · pp. 5053–5073
Dai YamazakiDaiki IkeshimaJeison SosaPaul BatesGeorge H. AllenTamlin M. Pavelsky

Abstract

Abstract High‐resolution raster hydrography maps are a fundamental data source for many geoscience applications. Here we introduce MERIT Hydro, a new global flow direction map at 3‐arc sec resolution (~90 m at the equator) derived from the latest elevation data (MERIT DEM) and water body data sets (G1WBM, Global Surface Water Occurrence, and OpenStreetMap). We developed a new algorithm to extract river networks near automatically by separating actual inland basins from dummy depressions caused by the errors in input elevation data. After a minimum amount of hand editing, the constructed hydrography map shows good agreement with existing quality‐controlled river network data sets in terms of flow accumulation area and river basin shape. The location of river streamlines was realistically aligned with existing satellite‐based global river channel data. Relative error in the drainage area was <0.05 for 90% of Global Runoff Data Center (GRDC) gauges, confirming the accuracy of the delineated global river networks. Discrepancies in flow accumulation area were found mostly in arid river basins containing depressions that are occasionally connected at high water levels and thus resulting in uncertain watershed boundaries. MERIT Hydro improves on existing global hydrography data sets in terms of spatial coverage (between N90 and S60) and representation of small streams, mainly due to increased availability of high‐quality baseline geospatial data sets. The new flow direction and flow accumulation maps, along with accompanying supplementary layers on hydrologically adjusted elevation and channel width, will advance geoscience studies related to river hydrology at both global and local scales.

Flood Risk Assessment and ManagementHydrology and Watershed Management StudiesHydrology and Sediment Transport ProcessesHydrographyStreamflowElevation (ballistics)Hydrology (agriculture)Physiographic provinceSurface runoffRemote sensingChannel (broadcasting)GeologyDrainage basin

Funding

  • Leverhulme Trust
  • Royal Society
  • Ministry of Education, Culture, Sports, Science and Technology
  • Japan Society for the Promotion of Science
Citations
1,104
FWCI
55.09
field-weighted impact
References
25
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100%
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References
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IEEE Transactions on Geoscience and Remote Sensing · 2007 · 1,653 citations
A high‐accuracy map of global terrain elevations
Geophysical Research Letters · 2017 · 1,523 citations
Google Earth Engine: Planetary-scale geospatial analysis for everyone
Remote Sensing of Environment · 2017 · 13,362 citations
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