Contribution of automatically generated radar altimetry water levels from unsupervised classification to study hydrological connectivity within Amazon floodplains
暂无分享,去创建一个
M. Bonnet | F. Frappart | F. Satgé | F. Blarel | P. Zeiger | P. Enguehard
[1] Maxime Lenormand,et al. Protection gaps in Amazon floodplains will increase with climate change: Insight from the world's largest scaled freshwater fish , 2022, Aquatic Conservation: Marine and Freshwater Ecosystems.
[2] Frédéric Frappart,et al. Surface Water Storage in Rivers and Wetlands Derived from Satellite Observations: A Review of Current Advances and Future Opportunities for Hydrological Sciences , 2021, Remote. Sens..
[3] Frédérique Seyler,et al. Automatic Detection of Inland Water Bodies along Altimetry Tracks for Estimating Surface Water Storage Variations in the Congo Basin , 2021, Remote. Sens..
[4] Nicolas Baghdadi,et al. Evaluation of the Performances of Radar and Lidar Altimetry Missions for Water Level Retrievals in Mountainous Environment: The Case of the Swiss Lakes , 2021, Remote. Sens..
[5] B. Forsberg,et al. Limnological perspectives on conservation of floodplain lakes in the Amazon basin , 2021 .
[6] Shannon T. Brown,et al. Altimetry for the future: Building on 25 years of progress , 2021, Advances in Space Research.
[7] Frédéric Baup,et al. Backscattering signatures at Ka, Ku, C and S bands from low resolution radar altimetry over land , 2020, Advances in Space Research.
[8] Walter H. F. Smith,et al. The SARAL/AltiKa mission: A step forward to the future of altimetry , 2020, Advances in Space Research.
[9] C. Barbosa,et al. High-resolution mapping of floodplain topography from space: A case study in the Amazon , 2020 .
[10] Yan-ping Huang,et al. Evaluation of historic and operational satellite radar altimetry missions for constructing consistent long-term lake water level records , 2020, Hydrology and Earth System Sciences.
[11] Guilherme Fernando Capristo Silva,et al. Environmental dynamics of the Juruá watershed in the Amazon , 2020, Environment, Development and Sustainability.
[12] E. Park. Characterizing channel-floodplain connectivity using satellite altimetry: Mechanism, hydrogeomorphic control, and sediment budget , 2020 .
[13] W. Darwall,et al. Freshwater fish diversity hotspots for conservation priorities in the Amazon Basin , 2020, Conservation biology : the journal of the Society for Conservation Biology.
[14] L. Hess,et al. Floodplain land cover affects biomass distribution of fish functional diversity in the Amazon River , 2019, Scientific Reports.
[15] D. Yan,et al. Wetlands of International Importance: Status, Threats, and Future Protection , 2019, International journal of environmental research and public health.
[16] W. Mooij,et al. Towards a global model for wetlands ecosystem services , 2019, Current Opinion in Environmental Sustainability.
[17] Frédéric Frappart,et al. Evolution of the Performances of Radar Altimetry Missions from ERS-2 to Sentinel-3A over the Inner Niger Delta , 2018, Remote. Sens..
[18] Colin Finlayson,et al. Global extent and distribution of wetlands: trends and issues , 2018 .
[19] S. Natali,et al. Wetlands In a Changing Climate: Science, Policy and Management , 2018, Wetlands.
[20] Pierre Prandi,et al. The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Quality Assessment and Unique Characteristics of AltiKa Data , 2018, Remote. Sens..
[21] Anny Cazenave,et al. Satellite Altimetry over Oceans and Land Surfaces , 2017 .
[22] E. Latrubesse,et al. The hydro-geomorphologic complexity of the lower Amazon River floodplain and hydrological connectivity assessed by remote sensing and field control , 2017 .
[23] B. Flyvbjerg,et al. Damming the rivers of the Amazon basin , 2017, Nature.
[24] Maria Madalena de Sousa. “Identificação de Feições Anômalas dos Sistemas de Drenagem na Região do Alto Juruá – AC/AM, Utilizando Dados de Sensoriamento Remoto (Feature identification of anomalous drainage systems in the region of Alto Juruá - AC / AM, using remote sensing data) , 2016 .
[25] Gregory S. Cooper,et al. Amazon floodplain fish communities: Habitat connectivity and conservation in a rapidly deteriorating environment , 2016 .
[26] D. Lettenmaier,et al. The SWOT Mission and Its Capabilities for Land Hydrology , 2016, Surveys in Geophysics.
[27] J. Marengo,et al. Extreme seasonal droughts and floods in Amazonia: causes, trends and impacts , 2015 .
[28] Adriana G. Affonso,et al. Wetlands of the Lowland Amazon Basin: Extent, Vegetative Cover, and Dual-season Inundated Area as Mapped with JERS-1 Synthetic Aperture Radar , 2015, Wetlands.
[29] David Griffin,et al. The SARAL/AltiKa Altimetry Satellite Mission , 2015 .
[30] Frédéric Frappart,et al. Preliminary Assessment of SARAL/AltiKa Observations over the Ganges-Brahmaputra and Irrawaddy Rivers , 2015 .
[31] Pierre Borderies,et al. Radar altimetry backscattering signatures at Ka, Ku, C, and S bands over West Africa , 2015 .
[32] Michael Rast,et al. Review of Understanding of Earth’s Hydrological Cycle: Observations, Theory and Modelling , 2014, Surveys in Geophysics.
[33] Y. Schaeffer-Novelli,et al. Brazilian wetlands: their definition, delineation, and classification for research, sustainable management, and protection , 2014 .
[34] Frédérique Seyler,et al. Detection of Envisat RA2/ICE-1 retracked radar altimetry bias over the Amazon basin rivers using GPS , 2013 .
[35] E. Novo,et al. Monitoring flood extent in the lower Amazon River floodplain using ALOS/PALSAR ScanSAR images , 2013 .
[36] A. Petry,et al. Hydrological seasonality of the river affecting fish community structure of oxbow lakes: A limnological approach on the Amapá Lake, southwestern Amazon , 2013 .
[37] Trupti M. Kodinariya,et al. Review on determining number of Cluster in K-Means Clustering , 2013 .
[38] Paul D. Bates,et al. Floodplain channel morphology and networks of the middle Amazon River , 2012 .
[39] N. K. Pavlis,et al. The development and evaluation of the Earth Gravitational Model 2008 (EGM2008) , 2012 .
[40] S. Calmant,et al. Water levels in the Amazon basin derived from the ERS 2 and ENVISAT radar altimetry missions , 2010 .
[41] D. Alsdorf,et al. Characterization of complex fluvial systems using remote sensing of spatial and temporal water level variations in the Amazon, Congo, and Brahmaputra Rivers , 2010 .
[42] L. Hess,et al. Remote Sensing of the Distribution and Extent of Wetlands in the Amazon Basin , 2010 .
[43] Gérard Cochonneau,et al. Floodplain hydrology in an Amazon floodplain lake (Lago Grande de Curuai , 2008 .
[44] R. DeFries,et al. Amazonia revealed: forest degradation and loss of ecosystem goods and services in the Amazon Basin , 2007 .
[45] R. Naiman,et al. Freshwater biodiversity: importance, threats, status and conservation challenges , 2006, Biological reviews of the Cambridge Philosophical Society.
[46] A. Cazenave,et al. Preliminary results of ENVISAT RA-2-derived water levels validation over the Amazon basin , 2006 .
[47] D. Lettenmaier,et al. Measuring surface water from space , 2004 .
[48] P. Denny. Biodiversity and wetlands , 1994, Wetlands Ecology and Management.
[49] C. Barbosa,et al. Dual-season mapping of wetland inundation and vegetation for the central Amazon basin , 2003 .
[50] Nikos A. Vlassis,et al. The global k-means clustering algorithm , 2003, Pattern Recognit..
[51] M. Roca,et al. The ENVISAT Radar Altimeter System , 2003 .
[52] M. Molinier,et al. L'Amazone à Óbidos (Brésil): étude statistique des débits et bilan hydrologique , 2002 .
[53] John M. Melack,et al. Water level changes in a large Amazon lake measured with spaceborne radar interferometry and altimetry , 2001 .
[54] Petra Döll,et al. Global water data: A newly endangered species , 2001 .
[55] D. Alsdorf,et al. Interferometric radar measurements of water level changes on the Amazon flood plain , 2000, Nature.
[56] R. O'Neill,et al. The value of the world's ecosystem services and natural capital , 1997, Nature.
[57] W. Junk. The flood pulse concept in river-floodplain systems , 1989 .
[58] Anil K. Jain,et al. Algorithms for Clustering Data , 1988 .