4.6 Article

Building channel networks for flat regions in digital elevation models

Journal

HYDROLOGICAL PROCESSES
Volume 23, Issue 20, Pages 2879-2887

Publisher

WILEY-BLACKWELL
DOI: 10.1002/hyp.7378

Keywords

channel network; flat region; digital elevation model; flow direction; radial basis function; interpolation

Funding

  1. MOST [2006CB403307]
  2. CWN Under the Networks of Centers of Excellence

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Digital elevation models (DEMs) are data sources for distributed rainfall-runoff modelling in terms of providing the channel network for a watershed of interest. Assigning flow directions over flat regions is all important issue in the field of DEM processing and extraction of drainage features. Existing methods cannot fully incorporate the information of known drainage features and terrain surrounding the flat region. This study presented a hydrological correction method that integrates topographic information from different Sources to interpolate a convergent surface. It employs radial basis function interpolation to determine elevation increment at every position, utilizes data of digital channel network, incorporates elevation ill the Surrounding terrain, and ensures it convergent channel network while minimizing the impact of correction oil the original DEM. The method can be easily implemented in geographic information system (GIs) environment. It was applied to the DEM of the Heshui Watershed, China. The extracted channel network was visually inspected and quantitatively assessed through analysing the flow direction raster. Results showed that the channel network generated by the hydrological correction was consistent with the known drainage features and contained less parallel channels comparing with the results from two existing methods. Copyright (C) 2009 John Wiley & Sons, Ltd.

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