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Derivation of Geodesic Flow Fields and Spectrum in Digital Topographic Basins
Author(s) -
Sin Liang Lim,
B. S. Daya Sagar
Publication year - 2008
Publication title -
discrete dynamics in nature and society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.264
H-Index - 39
eISSN - 1607-887X
pISSN - 1026-0226
DOI - 10.1155/2008/312870
Subject(s) - geodesic , digital elevation model , channelized , fluvial , mathematical morphology , computer science , computation , geology , bathymetry , flow (mathematics) , field (mathematics) , set (abstract data type) , structural basin , remote sensing , algorithm , mathematics , geometry , artificial intelligence , geomorphology , image processing , image (mathematics) , telecommunications , oceanography , pure mathematics , programming language
We present a framework to characterize terrestrial functions - surficial and bottom topographic regions that are represented, respectively, as raster digital elevation models (DEMs) and digital bathymetric models (DBMs) - through analysis of flow fields that are simulated via geodesic morphology. Characterization of such functions is done via a new descriptor. Computation of this new descriptor involves the following steps: (i) basin in digital form representing topographic fluctuations as an input, (ii) threshold decomposition of basin - that consists of channelized and nonchannelized regions - into sets, (iii) proper indexing of these sets to decide the marker set (s) and its (their) corresponding mask set (s), (iv) performing geodesic propagation that provides basic flow field structures, and (v) finally providing a new basin descriptor - geodesic spectrum. We demonstrated this five-step framework on five different synthetic and/or realistic DEMs and/or DBMs. This study provides potentially invaluable insights to further study the travel-time flood propagation within basins of both fluvial and tidal systems. Copyright (C) 2008 S. L. Lim and B. S. D. Sagar

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