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GDBM: A database of global drainage basin morphology
Stuart W D Grieve1,2, Shiuan-An Chen3, Michael B Singer4,5,6
1School of Geography, Queen Mary University of London, London, United Kingdom.
A new Global Drainage Basin Morphology (GDBM) dataset quantifies river and basin shapes using topographic data. This resource enables analysis of how climate influences landscape evolution globally.
Area of Science:
- Geomorphology
- Hydrology
- Climate Science
Background:
- Rivers and drainage basins are fundamental landscape units shaped by geological, tectonic, biological, and climatic processes.
- Morphometric measurements are crucial for understanding these processes and comparing diverse landscape settings.
Purpose of the Study:
- To introduce the Global Drainage Basin Morphology (GDBM) dataset, a new near-global compilation of morphometric measurements for river channels and their drainage basins.
- To enable quantification of climate's influence on river and basin morphology by integrating data with climate zones.
Main Methods:
- Extraction of river channels from 30-meter resolution Shuttle Radar Topography Mission (SRTM) topographic data.
- Classification of channels using a conservative drainage area threshold for high confidence identification.
- Inclusion of Köppen-Geiger climate zones to facilitate climate-influence analysis.
Main Results:
- The GDBM dataset contains morphometric measurements for 254,966 basins and their longest river channels.
- Measurements include channel length, slope, relief, normalized concavity, basin area, basin shape, and aridity.
- The dataset is generated with minimal assumptions, focusing on reliable channel identification.
Conclusions:
- The GDBM dataset offers opportunities for rapid, near-global spatial analysis of channel morphology.
- It has the potential to provide insights into landscape evolution across diverse climate regimes.
- The dataset can be integrated with other data (e.g., landcover, soil properties) for broader Earth and environmental science applications.
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