WBMsed-Publications

From CSDMS
References WBMsed

Publication(s)YearTypeCited
Syvitski, James P. M.; Milliman, John D.; 2007. Geology, Geography, and Humans Battle for Dominance over the Delivery of Fluvial Sediment to the Coastal Ocean. The Journal of Geology, 115, 1–19. 10.1086/509246
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2007Related theory 693
Cohen, Sagy; Kettner, Albert J.; Syvitski, James P.M.; Fekete, Balázs M.; 2013. WBMsed, a distributed global-scale riverine sediment flux model: Model description and validation. Computers & Geosciences, 53, 80–93. 10.1016/j.cageo.2011.08.011
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2013

Model overview

72
Cohen, S.; 2012. WBMsed, verion 30-03-03.. , , https://csdms.colorado.edu/pub/models/doi-source-code/wbmsed-10.1594.IEDA.100178-30-03-03.tar.gz. 10.1594/IEDA/100178
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2012

Source code ref.

0
Dunn, Frances E; Darby, Stephen E; Nicholls, Robert J; Cohen, Sagy; Zarfl, Christiane; Fekete, Balázs M; 2019. Projections of declining fluvial sediment delivery to major deltas worldwide in response to climate change and anthropogenic stress. Environmental Research Letters, 14, 084034. 10.1088/1748-9326/ab304e
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2019Model application 47
Dunn, Frances E.; Nicholls, Robert J.; Darby, Stephen E.; Cohen, Sagy; Zarfl, Christiane; Fekete, Balázs M.; 2018. Projections of historical and 21st century fluvial sediment delivery to the Ganges-Brahmaputra-Meghna, Mahanadi, and Volta deltas. Science of The Total Environment, 642, 105–116. 10.1016/j.scitotenv.2018.06.006
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2018Model application 23
Frasson, Renato Prata de Moraes; Pavelsky, Tamlin M.; Fonstad, Mark A.; Durand, Michael T.; Allen, George H.; Schumann, Guy; Lion, Christine; Beighley, R. Edward; Yang, Xiao; 2019. Global Relationships Between River Width, Slope, Catchment Area, Meander Wavelength, Sinuosity, and Discharge. Geophysical Research Letters, 46, 3252–3262. 10.1029/2019GL082027
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2019Model application 45
de Vente, Joris; Poesen, Jean; Verstraeten, Gert; Govers, Gerard; Vanmaercke, Matthias; Van Rompaey, Anton; Arabkhedri, Mahmood; Boix-Fayos, Carolina; 2013. Predicting soil erosion and sediment yield at regional scales: Where do we stand?. Earth-Science Reviews, 127, 16–29. 10.1016/j.earscirev.2013.08.014
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2013

Model application

282
Cohen, Sagy; Kettner, Albert J.; Syvitski, James P.M.; 2014. Global suspended sediment and water discharge dynamics between 1960 and 2010: Continental trends and intra-basin sensitivity. Global and Planetary Change, 115, 44–58. 10.1016/j.gloplacha.2014.01.011
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2014

Model application

109
Harris, Courtney; Syvitski, Jaia; Arango, H.G.; Meiburg, E.H.; Cohen, Sagy; Jenkins, C.J.; Birchler, Justin; Hutton, E.W.H.; Kniskern, T.A.; Radhakrishnan, S.; Auad, Guillermo; 2020. Data-Driven, Multi-Model Workflow Suggests Strong Influence from Hurricanes on the Generation of Turbidity Currents in the Gulf of Mexico. Journal of Marine Science and Engineering, 8, 586. 10.3390/jmse8080586
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2020Model application 6
Moosdorf, Nils; Cohen, Sagy; von Hagke, Christoph; 2018. A global erodibility index to represent sediment production potential of different rock types. Applied Geography, 101, 36–44. 10.1016/j.apgeog.2018.10.010
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2018

Model application

14
Moragoda, Nishani; Cohen, Sagy; 2020. Climate-induced trends in global riverine water discharge and suspended sediment dynamics in the 21st century. Global and Planetary Change, 191, 103199. 10.1016/j.gloplacha.2020.103199
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2020

Model application

12
Nienhuis, Jaap; Paniagua-Arroyave, Juan; Dunn, Frances; Cohen, Sagy; Tornqvist, Torbjorn; 2021. Sediment retention in river deltas and feedbacks with delta morphology. .
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2021

Model application

0
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Nr. of publications: 11
Total citations: 610
h-index: 8
m-quotient: 0.73

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