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BibEntryCargo > Year: 2017 & Note : Auto downloaded ref at: 2021-04-24 or None

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Firstname:
An-Vo, D.-A.; Mushtaq, S.; Reardon-Smith, K.; (1) · Badlan, R.L.; Sharples, J.J.; Evans, J.P.; McRae, R.H.D.; (1) · Binesh, A.; Yeo, I.Y.; (1) · Blom, A.; Arkesteijn, L.; Chavarrias, V.; and Viparelli, E. (1) · Blom, A.; Chavarrias, V.; Fergus, R.I.; and Viparelli, E. (1) · Bogoni, M.; (1) · Chen, C.; Wu, R.; Fletcher, A.; Lawes, R.; Oliver, Y.; (1) · Cohen, S.; (1) · Driscoll, J.M.; Markstrom, Steven L.; Regan, R. Steven; Hay, Lauren E.; Viger, Roland J.; (1) · Dudley, R.W. (1) · Dudley, R.W.; (1) · Emily Underwood (1) · Essaid, H.I.; (1) · Essaid, H.I.; Caldwell, R.; Constantz, J.; (1) · GALABOV, V.; KORTCHEVA, A.; DIMITROVA, M.; (1) · Gao, Yanhong; Xiao, Linhong; Chen, Deliang; Xu, Jianwei; Zhang, Hongwen; (1) · Guang, Y., Xinlin, H., Xiaolong, L., Aihua, L., & Lianqing, X. (1) · Hattha, W.; Hiraishi, T.; (1) · He, Jian; Zhang, Yang; Wang, Kai; Chen, Ying; Leung, L. Ruby; Fan, Jiwen; Li, Meng; Zheng, Bo; Zhang, Qiang; Duan, Fengkui; He, Kebin; (1) · Hu, Jianlin; Li, Xun; Huang, Lin; Ying, Qi; Zhang, Qiang; Zhao, Bin; Wang, Shuxiao; Zhang, Hongliang; (1) · Jon Schwenk (1) · Jones, L.E.; Painter, J.A.; LaFontaine, J.H.; Sepulveda, N.; Sifuentes, D.F.; (1) · Juckem, P.F.; Clark, B.R.; Feinstein, D.T.; (1) · Langevin, C.D.; Hughes, J.D.; Banta, E.R.; Niswonger, R.G.; Panday, S.; Provost, A.M.; (1) · Logan, Liz C.; Lavier, Luc L.; Choi, Eunseo; Tan, Eh; Catania, Ginny A.; (1) · McGuire, L.; (1) · Meng, X.; Ji, X.; (1) · Omani, Nina; Srinivasan, Raghavan; Karthikeyan, Raghupathy; Smith, Patricia; (1) · Pignotti, Garett; Rathjens, Hendrik; Cibin, Raj; Chaubey, Indrajeet; Crawford, Melba; (1) · Provost, A.M.; Langevin, C.D.; Hughes, J.D.; (1) · Rossetto, Rudy; De Filippis, Giovanna; Borsi, Iacopo; Foglia, Laura; Cannata, Massimiliano; Criollo, Rotman; Vásquez-Suñé, Enric; (1) · Swastiko, W.A.; Rifani, A.; (1) · Szulecka, A.; Bogacki, M.; (1) · Wawrzyniak, Tomasz; Osuch, Marzena; Nawrot, Adam; Napiorkowski, Jaroslaw Jan; (1) · Webb, R.M.T., and Parkhurst, D.L. (1) · Zhang, Ying; Hou, Jinliang; Gu, Juan; Huang, Chunlin; Li, Xin; (1)
Title:
A New Model for River Meanders (1) · Advance, Retreat, and Halt of Abrupt Gravel-Sand Transitions in Alluvial Rivers (1) · Comparative Analysis of HRU and Grid-Based SWAT Models (1) · Comparison between past and future extreme precipitations simulated by global and regional climate models over the Tibetan Plateau: DOWNSCALED EXTREME PRECIPITATIONS SIMULATION OVER THE TIBET (1) · Documentation for the MODFLOW 6 Groundwater Flow Model (1) · Documentation for the “XT3D” option in the Node Property Flow (NPF) Package of MODFLOW 6 (1) · Ensemble Predictions of Air Pollutants in China in 2013 for Health Effects Studies Using WRF/CMAQ Modeling System with Four Emission Inventories (1) · GSFLOW model simulations used to evaluate the impact of irrigated agriculture on surface water - groundwater interaction (2) · Groundwater-flow budget for the lower Apalachicola-Chattahoochee-Flint River Basin in southwestern Georgia and parts of Florida and Alabama, 2008–12 (1) · High spatiotemporal resolution of river planform dynamics from Landsat: The RivMAP toolbox and results from the Ucayali River (1) · Hydrological Modeling of Highly Glacierized Basins (Andes, Alps, and Central Asia) (1) · Hydrological modeling in the Manas River Basin using soil and water assessment tool driven by CMADS (1) · MARM5D, version 1.0 (1) · Meander Centerline Migration Model, version 1.0. (1) · Model climate scenario output Upper Charles river basin, Massachusetts, 2036-2065 change from 1975-2004, Representative Concentration Pathways 4.5 and 8.5 (1) · Model climate scenario output for the Farmington river basin, Connecticut and Massachusetts, 2036-2065 change from 1975-2004, Representative Concentration Pathways 4.5 and 8.5 (1) · Modelling changing catchment under the climate variability: a case study from a semi-arid catchment in the upper basin of the Goulburn River (1) · Modelling irrigated sugarcane crop under seasonal climate variability: A case study in Burdekin district (1) · Modelling of the Biogenic Volatile Organic Compounds Emission in Poland Using the Wrf/Megan Approach (1) · Moored Ship Motions due to Tropical Cyclone Linda (1) · Multi-year application of WRF-CAM5 over East Asia-Part I: Comprehensive evaluation and formation regimes of O3 and PM2.5 (1) · National Hydrologic Model Parameter Database: 2017-05-08 Download (1) · PRAKIRAAN HUJAN LEBAT MENGGUNAKAN MODEL WRF-ARW DI PALANGKA RAYA (STUDI KASUS 3 JUNI 2016) (1) · Run-off modelling in an Arctic unglaciated catchment (Fuglebekken, Spitsbergen) (1) · SWAT-Based Hydrological Data Assimilation System (SWAT-HDAS): Description and Case Application to River Basin-Scale Hydrological Predictions: SWAT-HDAS: DESCRIPTION AND APPLICATION (1) · SWEHR version 1.0 (1) · Semi-brittle rheology and ice dynamics in DynEarthSol3D (1) · Sensitivity of simulated yield of dryland wheat to uncertainty in estimated plant-available water capacity (1) · Simulation of groundwater flow in the glacial aquifer system of northeastern Wisconsin with variable model complexity (1) · Spatial analysis and simulation tools for groundwater management: the FREEWAT platform (1) · TOWARDS A SYSTEM FOR SEA STATE FORECASTS IN THE BULGARIAN COASTAL ZONE: THE CASE OF THE STORM OF 07-08 FEBRUARY 2012 (1) · The equilibrium alluvial river under variable flow and its channel-forming discharge (1) · The role of deep flaming in violent pyroconvection (1) · Transformation of surface water and groundwater and water balance in the agricultural irrigation area of the Manas River Basin, China. (1) · Water, Energy, and Biogeochemical Model (WEBMOD), user’s manual, version 1 (1)
Editors:
URL:
None (4) · http://doi.wiley.com/10.1002/2017MS001144 (1) · http://doi.wiley.com/10.1002/joc.5243 (1) · http://www.davidpublisher.org/index.php/Home/Article/index?id=32149.html (1) · http://www.ijabe.org/index.php/ijabe/article/view/3461 (1) · http://www.mdpi.com/2073-4441/9/4/272 (1) · http://www.mssanz.org.au/modsim2017/B3/chen.pdf (1) · http://www.mssanz.org.au/modsim2017/H10/badlan.pdf (1) · http://www.mssanz.org.au/modsim2017/J6/anvo.pdf (1) · http://www.mssanz.org.au/modsim2017/L7/binesh.pdf (1) · https://acp.copernicus.org/preprints/acp-2017-182/acp-2017-182.pdf (1) · https://acquesotterranee.net/index.php/acque/article/view/293 (1) · https://agupubs.onlinelibrary.wiley.com/doi/full/10.1002/2016EA000196 (1) · https://csdms.colorado.edu/pub/models/doi-source-code/Meander-Centerline-Migration-Model-1.0.tar.gz (1) · https://csdms.colorado.edu/pub/models/doi-source-code/marm5d-10.5281.zenodo.258080.zip (1) · https://csdms.colorado.edu/pub/models/doi-source-code/swehr-1.0.tar.gz (1) · https://doi.org/10.2429/proc.2017.11(2)045 (1) · https://eos.org/research-spotlights/a-new-model-for-river-meanders (1) · https://linkinghub.elsevier.com/retrieve/pii/S1352231017303977 (1) · https://pubs.er.usgs.gov/publication/sir20175010 (1) · https://pubs.er.usgs.gov/publication/sir20175141 (1) · https://pubs.er.usgs.gov/publication/tm6A55 (1) · https://pubs.er.usgs.gov/publication/tm6A56 (1) · https://pubs.er.usgs.gov/publication/tm6B35 (1) · https://tc.copernicus.org/articles/11/117/2017/ (1) · https://water.usgs.gov/GIS/metadata/usgswrd/XML/essaid2017_StotEn.xml (2) · https://www.cambridge.org/core/product/identifier/S0260305517000088/type/journal_article (1) · https://www.preprints.org/manuscript/201701.0119/v1 (1) · https://www.sciencebase.gov/catalog/item/58b9ce9be4b0bcef64ef8164 (1) · https://www.sciencebase.gov/catalog/item/58fa4363e4b0b7ea54524ba6 (1) · https://www.sciencebase.gov/catalog/item/59a09ecde4b0d7af54bb3f55 (1) · https://www.sgem.org/sgemlib/spip.php?article2215 (1)
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