Quasi‐three‐dimensional modeling of rip current systems KA Haas, IA Svendsen, MC Haller, Q Zhao Journal of Geophysical Research: Oceans 108 (C7), 2003 | 143 | 2003 |
Wave power potential along the Atlantic coast of the southeastern USA Z Defne, KA Haas, HM Fritz Renewable Energy 34 (10), 2197-2205, 2009 | 129 | 2009 |
Laboratory measurements of the vertical structure of rip currents KA Haas, IA Svendsen Journal of Geophysical Research: Oceans 107 (C5), 15-1-15-19, 2002 | 110 | 2002 |
Numerical modeling of tidal currents and the effects of power extraction on estuarine hydrodynamics along the Georgia coast, USA Z Defne, KA Haas, HM Fritz Renewable Energy 36 (12), 3461-3471, 2011 | 97 | 2011 |
Quasi-3D nearshore circulation model SHORECIRC version 2.0 IA Svendsen, KA Haas, Q Zhao University of Delaware, Ocean Engineering Laboratory, Center for Applied …, 2002 | 92 | 2002 |
Comparing a quasi-3D to a full 3D nearshore circulation model: SHORECIRC and ROMS KA Haas, JC Warner Ocean Modelling 26 (1-2), 91-103, 2009 | 85 | 2009 |
GIS based multi-criteria assessment of tidal stream power potential: A case study for Georgia, USA Z Defne, KA Haas, HM Fritz Renewable and Sustainable Energy Reviews 15 (5), 2310-2321, 2011 | 70 | 2011 |
Towards improved socio-economic assessments of ocean acidification’s impacts N Hilmi, D Allemand, S Dupont, A Safa, G Haraldsson, PALD Nunes, ... Marine Biology 160 (8), 1773-1787, 2013 | 65 | 2013 |
Tidal stream energy site assessment via three-dimensional model and measurements PA Work, KA Haas, Z Defne, T Gay Applied energy 102, 510-519, 2013 | 55 | 2013 |
Assessment of energy production potential from tidal streams in the United States KA Haas, HM Fritz, SP French, BT Smith, V Neary Georgia Tech Research Corporation, Atlanta, GA (United States), 2011 | 54 | 2011 |
Quasi-3D nearshore circulation model SHORECIRC IA Svendsen, K Haas, Q Zhao Center for Appl. Coastal Res., Univ. of Delaware, Internal Rep., CACR-02–01 …, 2002 | 43 | 2002 |
Numerical modeling of nearshore circulation on a barred beach with rip channels KA Haas, IA Svendsen, MC Haller Coastal Engineering 1998, 801-814, 1999 | 43 | 1999 |
Process based modeling of total longshore sediment transport KA Haas, DM Hanes Journal of Coastal Research 20 (3 (203)), 853-861, 2004 | 39 | 2004 |
A wetting and drying scheme for ROMS JC Warner, Z Defne, K Haas, HG Arango Computers & geosciences 58, 54-61, 2013 | 37 | 2013 |
National geodatabase of tidal stream power resource in USA Z Defne, KA Haas, HM Fritz, L Jiang, SP French, X Shi, BT Smith, ... Renewable and Sustainable Energy Reviews 16 (5), 3326-3338, 2012 | 37 | 2012 |
Three-dimensional modeling of rip current systems. KA Haas | 32 | 2001 |
Analysis of rip current systems IA Svendsen, KA Haas, Q Zhao Coastal Engineering 2000, 1127-1140, 2001 | 29 | 2001 |
Three‐dimensional effects in shear waves Q Zhao, IA Svendsen, K Haas Journal of Geophysical Research: Oceans 108 (C8), 2003 | 28 | 2003 |
Assessment of energy production potential from ocean currents along the United States coastline K Haas Georgia Tech Research Corporation, 2013 | 26 | 2013 |
Depth inversion in the surf zone with inclusion of wave nonlinearity using video-derived celerity J Yoo, HM Fritz, KA Haas, PA Work, CF Barnes Journal of waterway, port, coastal, and ocean engineering 137 (2), 95-106, 2011 | 26 | 2011 |