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Adams, Jordan M.; Gasparini, Nicole M.; Hobley, Daniel E. J.; Tucker, Gregory E.; Hutton, Eric W. H.; Nudurupati, Sai S.; Istanbulluoglu, Erkan; (1) ·
Allahdadi, Mohammad Nabi; He, Ruoying; Neary, Vincent S.; (1) ·
Anonymous; (1) ·
Avanzi, Francesco; Rungee, Joseph; Maurer, Tessa; Bales, Roger; Ma, Qin; Glaser, Steven; Conklin, Martha; (1) ·
Babanin, Alexander V.; Young, Ian R.; Zieger, S.; (1) ·
Barnhart, Katherine R.; Glade, Rachel C.; Shobe, Charles M.; Tucker, Gregory E.; (1) ·
Calov, Reinhard; Beyer, Sebastian; Greve, Ralf; Beckmann, Johanna; Willeit, Matteo; Kleiner, Thomas; Rückamp, Martin; Humbert, Angelika; Ganopolski, Andrey; (1) ·
Champagne, Olivier; Arain, Altaf; Leduc, Martin; Coulibaly, Paulin; McKenzie, Shawn; (1) ·
Champagne, Olivier; Leduc, Martin; Coulibaly, Paulin; Arain, M. Altaf; (1) ·
Clow, Gary D.; (1) ·
Cohen, Sagy; Raney, Austin; Munasinghe, Dinuke; Loftis, Derek; Molthan, Andrew; Bell, Jordan; Rogers, Laura; Galantowicz, John; Brakenridge, G. Robert; Kettner, Albert J.; Huang, Yu-Fen; Tsang, Yin-Phan; (1) ·
Gravens, Mark; Sanderson, Dylan; (1) ·
Hascoet, Laurent; (1) ·
Ito, Takamitsu; Bracco, Annalisa; Sun, Daoxun; (1) ·
Leach, Chloe; Coulthard, Tom; Barkwith, Andrew; Parsons, Daniel R.; Manson, Susan; (1) ·
Logan, Liz C.; Narayanan, Sri Hari Krishna; Greve, Ralf; Heimbach, Patrick; (2) ·
Lyons, Nathan J.; Val, Pedro; Albert, James S.; Willenbring, Jane K.; Gasparini, Nicole M.; (1) ·
Mutemi, Joseph Nzau; (1) ·
Nienhuis, Jaap H.; Lorenzo-Trueba, Jorge; (2) ·
Resio, Donald T.; (1) ·
Tucker, G. E.; Hobley, D. E. J.; Hutton, E.; Gasparini, N. M.; Istanbulluoglu, E.; Adams, J. M.; Nudurupati, S. S.; (1) ·
Ultee, Lizz; (1) ·
Walker, David; (1) ·
Wen, Hang; Perdrial, Julia; Bernal, Susana; Abbott, Benjamin W.; Dupas, Rémi; Godsey, Sarah E.; Harpold, Adrian; Rizzo, Donna; Underwood, Kristen; Adler, Thomas; Hale, Rebecca; Sterle, Gary; Li, Li; (1) ·
Young, David; Bak, A.; Forte, Michael; (1) ·
Ziliani, Luca; Surian, Nicola; Botter, Gianluca; Mao, Luca; (2)
Assessment of geomorphic effectiveness of controlled floods in a braided river using a reduced-complexity numerical model (1) ·
CVPM 1.1: a flexible heat-transfer modeling system for permafrost (1) ·
CellLab-CTS 2015: a Python library for continuous-time stochastic cellular automaton modeling using Landlab (1) ·
Deep convection simulation from the MITgcm (MIT General Circulation Model) (IVOMLS project) (1) ·
Estimation of Temporally Evolving Typhoon Winds and Waves from Synthetic Aperture Radar: (1) ·
Evapotranspiration feedbacks shift annual precipitation-runoff relationships during multi-year droughts in a Mediterranean mixed rain-snow climate (1) ·
Future shift in winter streamflow modulated by internal variability of climate in southern Ontario (1) ·
Identification and selection of representative storm events from a probabilistic storm data base (1) ·
Improved Source Term Specification Improved Evolutionary Characteristics of Directional Spectra: (1) ·
Improving Seasonal Climate Forecasts over Various Regions of Africa using the Multimodel Superensemble Approach (1) ·
Initialization and setup of the Coastal Model Test Bed : integrated bathymetry (1) ·
Predicting Ocean Waves along the U.S. East Coast During Energetic Winter Storms: sensitivity to Whitecapping parameterizations (1) ·
Referee comment on SICOPOLIS-AD (1) ·
Referee comment re: SICOPOLIS-OpenAD (1) ·
Review of Simulating barrier island response to sea-level rise with the barrier island and inlet environment (BRIE) model v1.0 (1) ·
SICOPOLIS-AD v1: an open-source adjoint modeling framework for ice sheet simulation enabled by the algorithmic differentiation tool OpenAD (1) ·
Simulating barrier island response to sea-level rise with the barrier island and inlet environment (BRIE) model v1.0 (1) ·
Simulation of the future sea level contribution of Greenland with a new glacial system model (1) ·
Supplementary material to "Assessment of geomorphic effectiveness of controlled floods in a braided river using a reduced-complexity numerical model" (1) ·
Supplementary material to "SICOPOLIS-AD v1: an open-source adjoint modeling framework for ice sheet simulation enabled by the algorithmic differentiation tool OpenAD" (1) ·
Supplementary material to "Simulating barrier island response to sea-level rise with the barrier island and inlet environment (BRIE) model v1.0" (1) ·
Temperature controls production but hydrology controls export of dissolved organic carbon at the catchment scale (1) ·
The Coastline Evolution Model 2D (CEM2D) V1.1 (1) ·
The Floodwater Depth Estimation Tool (FwDET v2.0) for Improved Remote Sensing Analysis of Coastal Flooding (1) ·
The Landlab OverlandFlow component: a Python library for computing shallow-water flow across watersheds (1) ·
Topographic controls on divide migration, stream capture, and diversification in riverine life (1) ·
Wave Climate and Wave Mixing in the Marginal Ice Zones of Arctic Seas, Observations and Modelling: (1) ·
Winter hydrometeorological extreme events modulated by large scale atmospheric circulation in southern Ontario (1) ·
terrainbento 1.0: a Python package for multi-model analysis in long-term drainage basin evolution (1)
http://hdl.handle.net/11681/26341 (1) ·
http://hdl.handle.net/11681/30023 (1) ·
http://www.dtic.mil/docs/citations/ADA557079 (1) ·
http://www.dtic.mil/docs/citations/ADA590330 (1) ·
http://www.dtic.mil/docs/citations/ADA601182 (1) ·
http://www.preprints.org/manuscript/201908.0042/v1 (1) ·
https://esd.copernicus.org/preprints/esd-2019-56/esd-2019-56.pdf (1) ·
https://esurf.copernicus.org/preprints/esurf-2019-55/esurf-2019-55.pdf (1) ·
https://gmd.copernicus.org/preprints/8/9507/2015/gmdd-8-9507-2015.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2016-277/gmd-2016-277.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2018-121/gmd-2018-121.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2018-204/gmd-2018-204.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-10/gmd-2019-10-RC2.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-10/gmd-2019-10-supplement.zip (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-10/gmd-2019-10.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-197/gmd-2019-197.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-213/gmd-2019-213-RC1.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-213/gmd-2019-213-RC2.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-213/gmd-2019-213-supplement.pdf (1) ·
https://gmd.copernicus.org/preprints/gmd-2019-213/gmd-2019-213.pdf (1) ·
https://hdl.handle.net/1912/9154 (1) ·
https://hess.copernicus.org/preprints/hess-2019-204/hess-2019-204.pdf (1) ·
https://hess.copernicus.org/preprints/hess-2019-310/hess-2019-310.pdf (1) ·
https://hess.copernicus.org/preprints/hess-2019-377/hess-2019-377.pdf (1) ·
https://hess.copernicus.org/preprints/hess-2019-424/hess-2019-424-supplement.pdf (1) ·
https://hess.copernicus.org/preprints/hess-2019-424/hess-2019-424.pdf (1) ·
https://nhess.copernicus.org/preprints/nhess-2019-78/nhess-2019-78.pdf (1) ·
https://os.copernicus.org/preprints/os-2018-112/os-2018-112.pdf (1) ·
https://tc.copernicus.org/preprints/tc-2018-23/tc-2018-23.pdf (1)
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