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Remote Sensing Letters

Spectral characterization of suspended sediments generated from two texture classes of clay soil

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Pages 643-649 | Received 13 Jun 1995, Accepted 21 Sep 1995, Published online: 27 Apr 2007

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L. Qu, T. Lei, D. Ning, D. Civco & X. Yang. (2016) A spectral mixing algorithm for quantifying suspended sediment concentration in the Yellow River: a simulation based on a controlled laboratory experiment. International Journal of Remote Sensing 37:11, pages 2560-2584.
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A. N. Tyler, E. Svab, T. Preston, M. Présing & W. A. Kovács. (2006) Remote sensing of the water quality of shallow lakes: A mixture modelling approach to quantifying phytoplankton in water characterized by high‐suspended sediment. International Journal of Remote Sensing 27:8, pages 1521-1537.
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Celso M. Isidro, Neil McIntyre, Alex M. Lechner & Ian Callow. (2018) Quantifying suspended solids in small rivers using satellite data. Science of The Total Environment 634, pages 1554-1562.
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Maurício R. Veronez, Lucas Kupssinskü, Tainá T. Guimarães, Emilie Koste, Juarez da Silva, Laís de Souza, William Oliverio, Rogélio Jardim, Ismael Koch, Jonas de Souza, Luiz GonzagaJr.Jr., Frederico Mauad, Leonardo Inocencio & Fabiane Bordin. (2018) Proposal of a Method to Determine the Correlation between Total Suspended Solids and Dissolved Organic Matter in Water Bodies from Spectral Imaging and Artificial Neural Networks. Sensors 18:2, pages 159.
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Vaibhav Garg, A. Senthil Kumar, S.P. Aggarwal, Vinay Kumar, Pankaj R. Dhote, Praveen K. Thakur, Bhaskar R. Nikam, Rohit S. Sambare, Asfa Siddiqui, Pradipta R. Muduli & Gurdeep Rastogi. (2017) Spectral similarity approach for mapping turbidity of an inland waterbody. Journal of Hydrology 550, pages 527-537.
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Richard Jung, Winny Adolph, Manfred Ehlers & Hubert Farke. (2015) A multi-sensor approach for detecting the different land covers of tidal flats in the German Wadden Sea — A case study at Norderney. Remote Sensing of Environment 170, pages 188-202.
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Jiunn-Lin Wu, Chung-Ru Ho, Chia-Ching Huang, Arun Srivastav, Jing-Hua Tzeng & Yao-Tung Lin. (2014) Hyperspectral Sensing for Turbid Water Quality Monitoring in Freshwater Rivers: Empirical Relationship between Reflectance and Turbidity and Total Solids. Sensors 14:12, pages 22670-22688.
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Otávio C. Montanher, Evlyn M.L.M. Novo, Cláudio C.F. Barbosa, Camilo D. Rennó & Thiago S.F. Silva. (2014) Empirical models for estimating the suspended sediment concentration in Amazonian white water rivers using Landsat 5/TM. International Journal of Applied Earth Observation and Geoinformation 29, pages 67-77.
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Raúl Espinoza Villar, Jean-Michel Martinez, Marie Le Texier, Jean-Loup Guyot, Pascal Fraizy, Paulo Roberto Meneses & Eurides de Oliveira. (2013) A study of sediment transport in the Madeira River, Brazil, using MODIS remote-sensing images. Journal of South American Earth Sciences 44, pages 45-54.
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Milan Onderka, Marek Rodný & Yvetta Velísková. (2011) Suspended Particulate Matter Concentrations Retrieved from Self-Calibrated Multispectral Satellite Imagery. Journal of Hydrology and Hydromechanics 59:4, pages 251-261.
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Tamlin M. Pavelsky & Laurence C. Smith. (2009) Remote sensing of suspended sediment concentration, flow velocity, and lake recharge in the Peace‐Athabasca Delta, Canada. Water Resources Research 45:11.
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Anton Vrieling. (2006) Satellite remote sensing for water erosion assessment: A review. CATENA 65:1, pages 2-18.
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Jerry C. Ritchie & Frank R. Schiebe. 2000. Remote Sensing in Hydrology and Water Management. Remote Sensing in Hydrology and Water Management 287 303 .

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