Object-based classification of vegetation and terrain topography in Southwestern Amazonia (Brazil) as a tool for detecting ancient fluvial geomorphic features
Reconstructing the evolution of large tropical fluvial systems over the geological time is challenging, particularly in areas such as the Amazonian lowlands where basic geological and geomorphological data are still scarce relatively to the large dimension of the region. In such areas, remote sensin...
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Published in: | Computers & geosciences Vol. 60; pp. 41 - 50 |
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Abstract | Reconstructing the evolution of large tropical fluvial systems over the geological time is challenging, particularly in areas such as the Amazonian lowlands where basic geological and geomorphological data are still scarce relatively to the large dimension of the region. In such areas, remote sensing data are useful for detecting ancient morphological features that may reveal past fluvial dynamics. In this study, we explored object-based image analysis (OBIA) in the Madeira-Purus interfluve, Southwestern Brazilian Amazonia, integrating geospatial data including Landsat satellite multispectral images, the digital elevation model (DEM) acquired during the Shuttle Radar Topography Mission (SRTM), and stream channels digitized from topographic maps. This approach provided the basis to categorize automatically classes with contrasting vegetation and/or topographic characteristics within the dense tropical forest over an extensive and relatively flat forested area. The main goal was to use these classes as a surrogate for the recognition of ancient geomorphic features consisting mainly of paleochannels that may help reconstructing fluvial history in space and time. Landsat optical images with stream vector were appropriate to classify open vegetation areas that grow over paleochannels, but failed to identify these objects when they were located over forested areas. However, the digital elevation model (DEM) derived from the Shuttle Radar Topography Mission (SRTM) was successful to detect these objects even in forested areas. Topographic survey undertaken in the field increased the classification reliability by demonstrating true terrain variations along transects measured across the paleochannels. Based on this technique, networks of dendritic paleochannels were mapped and related to ancient tributaries of the Madeira River that had their courses flowing opposite to main modern streams. This denotes a significant change in fluvial dynamics over time, most likely resulting from tectonic tilting.
•Open vegetation patches exist in southwestern Amazonia and their origin is puzzling.•In this work we test a hypothesis of their linkage to fluvial paleomorphologies.•Object-based image analysis on Landsat and SAR data provided a vegetation map.•The open vegetation classes in the study area occur on abandoned drainage systems.•Vegetation communities in Amazonia are controlled by sediment deposition and erosion. |
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AbstractList | Reconstructing the evolution of large tropical fluvial systems over the geological time is challenging, particularly in areas such as the Amazonian lowlands where basic geological and geomorphological data are still scarce relatively to the large dimension of the region. In such areas, remote sensing data are useful for detecting ancient morphological features that may reveal past fluvial dynamics. In this study, we explored object-based image analysis (OBIA) in the Madeira-Purus interfluve, Southwestern Brazilian Amazonia, integrating geospatial data including Landsat satellite multispectral images, the digital elevation model (DEM) acquired during the Shuttle Radar Topography Mission (SRTM), and stream channels digitized from topographic maps. This approach provided the basis to categorize automatically classes with contrasting vegetation and/or topographic characteristics within the dense tropical forest over an extensive and relatively flat forested area. The main goal was to use these classes as a surrogate for the recognition of ancient geomorphic features consisting mainly of paleochannels that may help reconstructing fluvial history in space and time. Landsat optical images with stream vector were appropriate to classify open vegetation areas that grow over paleochannels, but failed to identify these objects when they were located over forested areas. However, the digital elevation model (DEM) derived from the Shuttle Radar Topography Mission (SRTM) was successful to detect these objects even in forested areas. Topographic survey undertaken in the field increased the classification reliability by demonstrating true terrain variations along transects measured across the paleochannels. Based on this technique, networks of dendritic paleochannels were mapped and related to ancient tributaries of the Madeira River that had their courses flowing opposite to main modern streams. This denotes a significant change in fluvial dynamics over time, most likely resulting from tectonic tilting. Reconstructing the evolution of large tropical fluvial systems over the geological time is challenging, particularly in areas such as the Amazonian lowlands where basic geological and geomorphological data are still scarce relatively to the large dimension of the region. In such areas, remote sensing data are useful for detecting ancient morphological features that may reveal past fluvial dynamics. In this study, we explored object-based image analysis (OBIA) in the Madeira-Purus interfluve, Southwestern Brazilian Amazonia, integrating geospatial data including Landsat satellite multispectral images, the digital elevation model (DEM) acquired during the Shuttle Radar Topography Mission (SRTM), and stream channels digitized from topographic maps. This approach provided the basis to categorize automatically classes with contrasting vegetation and/or topographic characteristics within the dense tropical forest over an extensive and relatively flat forested area. The main goal was to use these classes as a surrogate for the recognition of ancient geomorphic features consisting mainly of paleochannels that may help reconstructing fluvial history in space and time. Landsat optical images with stream vector were appropriate to classify open vegetation areas that grow over paleochannels, but failed to identify these objects when they were located over forested areas. However, the digital elevation model (DEM) derived from the Shuttle Radar Topography Mission (SRTM) was successful to detect these objects even in forested areas. Topographic survey undertaken in the field increased the classification reliability by demonstrating true terrain variations along transects measured across the paleochannels. Based on this technique, networks of dendritic paleochannels were mapped and related to ancient tributaries of the Madeira River that had their courses flowing opposite to main modern streams. This denotes a significant change in fluvial dynamics over time, most likely resulting from tectonic tilting. •Open vegetation patches exist in southwestern Amazonia and their origin is puzzling.•In this work we test a hypothesis of their linkage to fluvial paleomorphologies.•Object-based image analysis on Landsat and SAR data provided a vegetation map.•The open vegetation classes in the study area occur on abandoned drainage systems.•Vegetation communities in Amazonia are controlled by sediment deposition and erosion. |
Author | Albuquerque, Paulo Cesar Gurgel Rossetti, Dilce de Fátima Bertani, Thiago de Castilho |
Author_xml | – sequence: 1 givenname: Thiago de Castilho surname: Bertani fullname: Bertani, Thiago de Castilho email: thiagob@dsr.inpe.br – sequence: 2 givenname: Dilce de Fátima surname: Rossetti fullname: Rossetti, Dilce de Fátima email: rossetti@dsr.inpe.br, rossetti@museu-goeldi.br – sequence: 3 givenname: Paulo Cesar Gurgel surname: Albuquerque fullname: Albuquerque, Paulo Cesar Gurgel email: gurgel@dsr.inpe.br |
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Cites_doi | 10.1016/j.cageo.2005.10.019 10.1016/j.yqres.2004.10.001 10.1002/esp.1996 10.1016/j.catena.2006.08.009 10.1016/j.rse.2007.03.005 10.1016/j.geomorph.2006.04.013 10.1177/0959683608091798 10.25249/0375-7536.1999294469476 10.1080/01431160601075582 10.1080/0143116031000102458 10.1130/0091-7613(1991)019<0246:SEMITI>2.3.CO;2 10.1145/1656274.1656278 10.1002/jqs.1132 10.1016/S1040-6182(00)00022-7 10.1016/j.geomorph.2012.07.015 10.1016/j.rse.2004.07.017 10.1016/j.isprsjprs.2003.10.002 10.1007/BF01133597 10.1126/science.320.5879.1011a 10.1126/science.218.4576.1004 10.1016/j.geomorph.2006.07.024 10.1016/j.jag.2009.11.002 10.1016/j.cageo.2009.04.011 10.1016/j.epsl.2008.10.029 10.1080/01431161.2011.636081 10.1016/j.epsl.2010.06.028 10.1080/01431169108955288 10.1016/S0924-2716(02)00124-7 |
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SubjectTerms | Brazil Classification computers digital elevation models Discrete element method Dynamics Fluvial evolution Geomorphology image analysis Landsat Landsat ETM lowlands Madeira River multispectral imagery Object-based image analysis (OBIA) Paleochannels radar rivers space and time spatial data SRTM-DEM stream channels Streams surveys tectonics Topography tropical forests Vegetation Vegetation classification |
Title | Object-based classification of vegetation and terrain topography in Southwestern Amazonia (Brazil) as a tool for detecting ancient fluvial geomorphic features |
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