Extracting drainage networks and their connectivity using LiDAR data

Author:

Roelens Jennifer1ORCID,Rosier Ine12,Dondeyne Stefaan1,Van Orshoven Jos2,Diels Jan1

Affiliation:

1. Division of Soil and Water Management, Department of Earth and Environmental Sciences; KU Leuven; Celestijnenlaan 200E - bus 2411 B-3001 Leuven Belgium

2. Division of Forest, Nature and Landscape, Department of Earth and Environmental Sciences; KU Leuven; Celestijnenlaan 200E - bus 2411 B-3001 Leuven Belgium

Funder

KU Leuven

Publisher

Wiley

Subject

Water Science and Technology

Reference61 articles.

1. Agentschap Onroerend Erfgoed 2013 Vijvergebied tussen Laambeek en Slangebeek [WWW Document] https://id.erfgoed.net/erfgoedobjecten/300246

2. AGIV 2012 Bodembedekkingskaart (BBK), 1m resolutie, opname 2012

3. Andersson , J. C. M. Pechlivanidis , I. G. Gustafsson , D. Donnelly , C. Arheimer , B. 2015 Key factors for improving large-scale hydrological model performance 77-88

4. An efficient and comprehensive method for drainage network extraction from DEM with billions of pixels using a size-balanced binary search tree;Bai;Geomorphology,2015

5. Agrarian landscapes linear features detection from LiDAR: Application to artificial drainage networks;Bailly;International Journal of Remote Sensing,2008

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