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BibEntryCargo > Journal: Ocean Dynamics & Note : Auto downloaded ref at: 2019-12-31 or Auto downloaded ref at: 2020-06-26

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Firstname:
Ali, Alfatih; Thiem, Øyvind; Berntsen, Jarle; (2) · Bai, Peng; Wang, Jia; Chu, Philip; Hawley, Nathan; Fujisaki-Manome, Ayumi; Kessler, James; Lofgren, Brent M.; Beletsky, Dmitry; Anderson, Eric J.; Li, Yaru; (1) · Bastos, A.; Collins, M.; Kenyon, N.; (1) · Bergh, Jon; Berntsen, Jarle; (1) · Bernardes, Marcos E. C.; Davidson, Mark A.; Dyer, Keith R.; George, Ken J.; (1) · Berntsen, Jarle; Alendal, Guttorm; Avlesen, Helge; (1) · Berntsen, Jarle; Alendal, Guttorm; Avlesen, Helge; Thiem, Øyvind; (1) · Berntsen, Jarle; Thiem, Øyvind; (1) · Fernandes, E. H. L.; Mari�o-Tapia, I.; Dyer, K. R.; M�ller, O. O.; (1) · Gurgel, Klaus-Werner; Dzvonkovskaya, Anna; Pohlmann, Thomas; Schlick, Thomas; Gill, Eric; (1) · Hibma, Anneke; Schuttelaars, Henk M.; Wang, Zheng B.; (1) · Jones, J. Eric; Davies, Alan M.; (2) · Jones, John Eric; Davies, Alan M.; (1) · Jones, John Eric; Hall, Philip; Davies, Alan M.; (1) · Lenstra, Klaas J. H.; Pluis, Stefan R. P. M.; Ridderinkhof, Wim; Ruessink, Gerben; van der Vegt, Maarten; (1) · Lynge, Birgit Kjoss; Berntsen, Jarle; Gjevik, Bjørn; (1) · Nicolle, Amandine; Karpytchev, Mikhail; Benoit, Michel; (1) · Niu, Qianru; Xia, Meng; (1) · Rao, Shivanesh; Xue, Huijie; Bao, Min; Funke, Simon; (1) · Robins, Peter Edward; Davies, Alan G.; (1) · Rygg, Kristin; Alendal, Guttorm; Haugan, Peter Mosby; (1) · Rygg, Kristin; Enstad, Lars Inge; Alendal, Guttorm; (1) · Stips, Adolf; Bolding, Karsten; Pohlmann, Thomas; Burchard, Hans; (1) · Thiem, Øyvind; Berntsen, Jarle; (1) · Thiem, Øyvind; Carr, Magda; Berntsen, Jarle; Davies, Peter A.; (1) · Tokano, Tetsuya; (1) · Vousdoukas, Michalis I.; Ferreira, Óscar; Almeida, Luís P.; Pacheco, André; (1) · Woth, Katja; Weisse, Ralf; von Storch, Hans; (1) · Xu, Hongzhou; Zhang, Keqi; Shen, Jian; Li, Yuepeng; (1) · Yang, Xiaochen; Zhang, Qinghe; Zhang, Jinfeng; Tan, Feng; Wu, Yuru; Zhang, Na; Yang, Hua; Pang, Qixiu; (1)
Title:
Amplification of the storm surges in shallow waters of the Pertuis Charentais (Bay of Biscay, France) (1) · An integrated model for three-dimensional cohesive sediment transport in storm event and its application on Lianyungang Harbor, China (1) · An inter-comparison of tidal solutions computed with a range of unstructured grid models of the Irish and Celtic Sea Regions (1) · An intercomparison between finite difference and finite element (TELEMAC) approaches to modelling west coast of Britain tides (2) · Climate change and North Sea storm surge extremes: an ensemble study of storm surge extremes expected in a changed climate projected by four different regional climate models (1) · Comparison of longitudinal equilibrium profiles of estuaries in idealized and process-based models (1) · Cyclic channel-shoal dynamics at the Ameland inlet: the impact on waves, tides, and sediment transport (1) · Determining tidal turbine farm efficiency in the Western Passage using the disc actuator theory (1) · Effects of the bottom boundary condition in numerical investigations of dense water cascading on a slope (1) · Estimating the internal pressure gradient errors in a σ-coordinate ocean model for the Nordic Seas (1) · Flow over a rounded backward-facing step, using a z-coordinate model and a σ-coordinate model (1) · Modeling the ice-attenuated waves in the Great Lakes (1) · Morphological controls in sandy estuaries: the influence of tidal flats and bathymetry on sediment transport (1) · Numerical modelling of organic waste dispersion from fjord located fish farms (1) · Numerical simulation of flow and aquaculture organic waste dispersion in a curved channel (1) · Numerical simulation of internal solitary wave—induced reverse flow and associated vortices in a shallow, two-layer fluid benthic boundary layer (1) · Numerical studies of dispersion due to tidal flow through Moskstraumen, northern Norway (1) · Numerical studies of large-amplitude internal waves shoaling and breaking at shelf slopes (1) · Numerical studies of wind forced internal waves with a nonhydrostatic model (1) · Simulating CO2 transport into the ocean from a CO2 lake at the seafloor using a z- and a σ-coordinate model (1) · Simulating the temporal and spatial dynamics of the North Sea using the new model GETM (general estuarine transport model) (1) · Simulation and detection of tsunami signatures in ocean surface currents measured by HF radar (1) · Simulation of tides in hydrocarbon lakes on Saturn’s moon Titan (1) · Storm surge computations for the west coast of Britain using a finite element model (TELEMAC) (1) · Storm surge simulation along the U.S. East and Gulf Coasts using a multi-scale numerical model approach (1) · The attenuation of tidal and subtidal oscillations in the Patos Lagoon estuary (1) · The role of eddies on pathways, transports, and entrainment in dense water flows along a slope (1) · Toward reliable storm-hazard forecasts: XBeach calibration and its potential application in an operational early-warning system (1) · Towards medium-term (order of months) morphodynamic modelling of the Teign estuary, UK (1) · Water and sediment movement around a coastal headland: Portland Bill, southern UK (1) · Wave climatology of Lake Erie based on an unstructured-grid wave model (1)
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URL:
http://link.springer.com/10.1007/s10236-003-0031-1 (1) · http://link.springer.com/10.1007/s10236-003-0046-7 (1) · http://link.springer.com/10.1007/s10236-003-0077-0 (1) · http://link.springer.com/10.1007/s10236-004-0090-y (1) · http://link.springer.com/10.1007/s10236-005-0006-5 (1) · http://link.springer.com/10.1007/s10236-005-0024-3 (1) · http://link.springer.com/10.1007/s10236-005-0039-9 (1) · http://link.springer.com/10.1007/s10236-007-0118-1 (1) · http://link.springer.com/10.1007/s10236-008-0140-y (1) · http://link.springer.com/10.1007/s10236-009-0211-8 (1) · http://link.springer.com/10.1007/s10236-009-0219-0 (1) · http://link.springer.com/10.1007/s10236-009-0220-7 (1) · http://link.springer.com/10.1007/s10236-009-0225-2 (1) · http://link.springer.com/10.1007/s10236-009-0226-1 (1) · http://link.springer.com/10.1007/s10236-010-0268-4 (1) · http://link.springer.com/10.1007/s10236-010-0285-3 (1) · http://link.springer.com/10.1007/s10236-010-0309-z (1) · http://link.springer.com/10.1007/s10236-010-0321-3 (1) · http://link.springer.com/10.1007/s10236-011-0393-8 (1) · http://link.springer.com/10.1007/s10236-011-0396-5 (1) · http://link.springer.com/10.1007/s10236-011-0420-9 (1) · http://link.springer.com/10.1007/s10236-011-0434-3 (1) · http://link.springer.com/10.1007/s10236-012-0544-6 (1) · http://link.springer.com/10.1007/s10236-013-0638-9 (1) · http://link.springer.com/10.1007/s10236-014-0806-6 (1) · http://link.springer.com/10.1007/s10236-015-0906-y (1) · http://link.springer.com/10.1007/s10236-016-0982-7 (1) · http://link.springer.com/10.1007/s10236-018-1138-8 (1) · http://link.springer.com/10.1007/s10236-019-01249-3 (1) · http://link.springer.com/10.1007/s10236-019-01276-0 (1) · http://link.springer.com/10.1007/s10236-020-01379-z (1) · https://doi.org/10.1007/s10236-005-0006-5 (1)
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