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Abbasi, Mahmud Reza; Chegini, Vahid; Sadrinasab, Masoud; Siadatmousavi, Seyed Mostafa; (1) ·
Bianucci, Laura; Long, Wen; Khangaonkar, Tarang; Pelletier, Gregory; Ahmed, Anise; Mohamedali, Teizeen; Roberts, Mindy; Figueroa-Kaminsky, Cristiana; (1) ·
Lotsari, Eliisa S.; Calle, Mikel; Benito, Gerardo; Kukko, Antero; Kaartinen, Harri; Hyyppä, Juha; Hyyppä, Hannu; Alho, Petteri; (1) ·
Lu, Yucen; Shen, Yongming; (1) ·
May, S. M.; Engel, M.; Brill, D.; Cuadra, C.; Lagmay, A. M. F.; Santiago, J.; Suarez, J. K.; Reyes, M.; Brückner, H.; (1) ·
Morelissen, R.; Bijlsma, A.C.; Tapley, M.J.; (1) ·
Nugraha, Adi; Khangaonkar, Tarang; (1) ·
Schlögl, Sebastian; Lehning, Michael; Fierz, Charles; Mott, Rebecca; (1) ·
Schlögl, Sebastian; Lehning, Michael; Mott, Rebecca; (1) ·
Yang, Zizang; Zheng, Lianyuan; Richardson, Phillip; Myers, Edward; Zhang, Aijun; (1) ·
丁, 玉梅; (1)
A dedicated tidal stream atlas of the stratified tidal flows near Stonecutters Bridge, Hong Kong, based on 3D numerical simulations with HLES (1) ·
Block and boulder transport in Eastern Samar (Philippines) during Supertyphoon Haiyan (1) ·
Capabilities of data assimilation in correcting sea surface temperature in the Persian Gulf (1) ·
Detailed Hydrodynamic Feasibility Assessment for Leque Island and Zis a Ba Restoration Projects (1) ·
How Are Turbulent Sensible Heat Fluxes and Snow Melt Rates Affected by a Changing Snow Cover Fraction? (1) ·
Impact of Coastal Reclamation on Storm Surge in Bohai Bay (1) ·
Influence of bathymetry evolution on position of tidal shear front and hydrodynamic characteristics around the Yellow River estuary (1) ·
Model Development and Hindcast Simulations of NOAA’s Integrated Northern Gulf of Mexico Operational Forecast System (1) ·
Representation of Horizontal Transport Processes in Snowmelt Modeling by Applying a Footprint Approach (1) ·
Sensitivity of the regional ocean acidification and carbonate system in Puget Sound to ocean and freshwater inputs (1) ·
Topographical change caused by moderate and small floods in a gravel bed ephemeral river – a depth-averaged morphodynamic simulation approach (1)
1003–1009 (1) ·
120 (1) ·
135 (1) ·
140 (1) ·
154 (1) ·
163–185 (1) ·
22 (1) ·
224–231 (1) ·
273–283 (1) ·
405–419 (1) ·
543–558 (1)
http://link.springer.com/10.1007/s11707-012-0334-y (1) ·
http://www.hanspub.org/journal/PaperDownload.aspx?DOI=10.12677/AAM.2017.68120 (1) ·
http://www.mdpi.com/2077-1312/6/4/135 (1) ·
http://www.mdpi.com/2077-1312/6/4/140 (1) ·
https://esurf.copernicus.org/articles/3/543/2015/ (1) ·
https://esurf.copernicus.org/articles/6/163/2018/ (1) ·
https://jpoll.ut.ac.ir/article_60377.html (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S1570644309000926 (1) ·
https://www.elementascience.org/article/10.1525/elementa.151/ (1) ·
https://www.frontiersin.org/article/10.3389/feart.2018.00120/full (1) ·
https://www.frontiersin.org/article/10.3389/feart.2018.00154/full (1)
10.1007/s11707-012-0334-y (1) ·
10.1016/j.jher.2009.10.007 (1) ·
10.12677/AAM.2017.68120 (1) ·
10.1525/elementa.151 (1) ·
10.3389/feart.2018.00120 (1) ·
10.3389/feart.2018.00154 (1) ·
10.3390/jmse6040135 (1) ·
10.3390/jmse6040140 (1) ·
10.5194/esurf-3-543-2015 (1) ·
10.5194/esurf-6-163-2018 (1) ·
10.7508/pj.2017.02. 009 (1)
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