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Automatic River Planform Recognition Tested on Chilean Rivers
This paper addresses the issue of the automatic identification of river reaches and their planform type given the (observed) set of geomorphic elements and units. It introduces further advances with respect to the original proposal by Nardini and Brierley, and it explores explicitly the ability of the algorithm and associated tools to work properly on significantly different rivers while adopting a given same parametrization. This was indeed an envisaged ability speculated as a challenging conclusion of the previous work. The Duqueco, Laja, and Biobío rivers (Chile) were analyzed for this purpose. The conclusion is definitely positive, which opens future promising application horizons.
Automatic River Planform Recognition Tested on Chilean Rivers
This paper addresses the issue of the automatic identification of river reaches and their planform type given the (observed) set of geomorphic elements and units. It introduces further advances with respect to the original proposal by Nardini and Brierley, and it explores explicitly the ability of the algorithm and associated tools to work properly on significantly different rivers while adopting a given same parametrization. This was indeed an envisaged ability speculated as a challenging conclusion of the previous work. The Duqueco, Laja, and Biobío rivers (Chile) were analyzed for this purpose. The conclusion is definitely positive, which opens future promising application horizons.
Automatic River Planform Recognition Tested on Chilean Rivers
Andrea Gianni Cristoforo Nardini (Autor:in) / Francisca Salas (Autor:in) / Zoila Carrasco (Autor:in) / Noelia Valenzuela (Autor:in) / Renzo Rojas (Autor:in) / José Vargas-Baecheler (Autor:in) / Santiago Yépez (Autor:in)
2023
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
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