Interacting divided channel method for compound channel flow F Huthoff, PC Roos, DCM Augustijn, SJMH Hulscher Journal of hydraulic engineering 134 (8), 1158-1165, 2008 | 132 | 2008 |
The morphodynamics of tidal sand waves: A model overview G Besio, P Blondeaux, M Brocchini, SJMH Hulscher, D Idier, ... Coastal engineering 55 (7-8), 657-670, 2008 | 104 | 2008 |
Modeling tidal sand wave formation in a numerical shallow water model: The role of turbulence formulation BW Borsje, PC Roos, WM Kranenburg, SJMH Hulscher Continental shelf research 60, 17-27, 2013 | 65 | 2013 |
The cross‐sectional shape of tidal sandbanks: Modeling and observations PC Roos, SJMH Hulscher, MAF Knaapen, RMJ Van Damme Journal of Geophysical Research: Earth Surface 109 (F2), 2004 | 60 | 2004 |
The role of suspended load transport in the occurrence of tidal sand waves BW Borsje, WM Kranenburg, PC Roos, J Matthieu, S Hulscher Journal of Geophysical Research: Earth Surface 119 (4), 701-716, 2014 | 55 | 2014 |
Wave reworking of abandoned deltas JH Nienhuis, AD Ashton, PC Roos, SJMH Hulscher, L Giosan Geophysical research letters 40 (22), 5899-5903, 2013 | 53 | 2013 |
The influence of storms on sand wave evolution: A nonlinear idealized modeling approach GHP Campmans, PC Roos, HJ De Vriend, S Hulscher Journal of Geophysical Research: Earth Surface 123 (9), 2070-2086, 2018 | 49 | 2018 |
Influence of topography on tide propagation and amplification in semi-enclosed basins PC Roos, HM Schuttelaars Ocean Dynamics 61, 21-38, 2011 | 44 | 2011 |
Modelling the morphodynamic impact of offshore sandpit geometries PC Roos, SJMH Hulscher, HJ de Vriend Coastal engineering 55 (9), 704-715, 2008 | 44 | 2008 |
Modeling the influence of storms on sand wave formation: A linear stability approach GHP Campmans, PC Roos, HJ De Vriend, S Hulscher Continental Shelf Research 137, 103-116, 2017 | 43 | 2017 |
Large‐scale seabed dynamics in offshore morphology: Modeling human intervention PC Roos, SJMH Hulscher Reviews of geophysics 41 (2), 2003 | 42 | 2003 |
Video transects reveal that tidal sand waves affect the spatial distribution of benthic organisms and sand ripples JH Damveld, KJ van der Reijden, C Cheng, L Koop, LR Haaksma, ... Geophysical research letters 45 (21), 11,837-11,846, 2018 | 41 | 2018 |
An idealized model of tidal dynamics in the North Sea: resonance properties and response to large-scale changes PC Roos, JJ Velema, SJMH Hulscher, A Stolk Ocean dynamics 61, 2019-2035, 2011 | 41 | 2011 |
Sand ripples under sea waves. Part 4. Tile ripple formation PC Roos, P Blondeaux Journal of fluid mechanics 447, 227-246, 2001 | 34 | 2001 |
Spatial differences in sand wave dynamics between the Amsterdam and the Rotterdam region in the Southern North Sea LL Dorst, PC Roos, SJMH Hulscher Continental Shelf Research 31 (10), 1096-1105, 2011 | 31 | 2011 |
Grain size sorting over offshore sandwaves: Observations and modelling PC Roos, SJMH Hulscher, F van der Meer, T van Dijk, IGM Wientjes, ... 5th IAHR-Symposium on River, Coastal and Estuarine Morphodynamics, RCEM 2007 …, 2007 | 31 | 2007 |
Observations of barrier island length explained using an exploratory morphodynamic model PC Roos, HM Schuttelaars, RL Brouwer Geophysical Research Letters 40 (16), 4338-4343, 2013 | 30 | 2013 |
Seabed pattern dynamics and offshore sand extraction PC Roos | 29 | 2004 |
Modeling the effect of nonuniform sediment on the dynamics of offshore tidal sandbanks PC Roos, R Wemmenhove, SJMH Hulscher, HWM Hoeijmakers, NP Kruyt Journal of Geophysical Research: Earth Surface 112 (F2), 2007 | 27 | 2007 |
Modelling the two-way coupling of tidal sand waves and benthic organisms: a linear stability approach JH Damveld, PC Roos, BW Borsje, SJMH Hulscher Environmental fluid mechanics 19 (5), 1073-1103, 2019 | 26 | 2019 |