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Spilling breakers and surfactantsXINAN LIU; DIORIO, James D; DUNCAN, James H et al.Physics of fluids (1994). 2008, Vol 20, Num 9, issn 1070-6631, 091103.1-091103.1Conference Paper

An experimental study of surfactant effects on spilling breakersXINAN LIU; DUNCAN, James H.Journal of Fluid Mechanics. 2006, Vol 567, pp 433-455, issn 0022-1120, 23 p.Article

An experimental investigation of incipient spilling breakersDIORIO, J. D; LIU, X; DUNCAN, J. H et al.Journal of fluid mechanics. 2009, Vol 633, pp 271-283, issn 0022-1120, 13 p.Article

The effects of surfactants on spilling breaking wavesXINAN LIU; DUNCAN, James H.Nature (London). 2003, Vol 421, Num 6922, pp 520-523, issn 0028-0836, 4 p.Article

Infrared imagery of streak formation in a breaking waveHANDLER, Robert A; SAVELYEV, Ivan; LINDSEY, Michael et al.Physics of fluids (1994). 2012, Vol 24, Num 12, issn 1070-6631, 121701.1-121701.7Article

Excess energy approach for wave energy dissipation at submerged structuresTÜRKER, Umut.Ocean engineering. 2014, Vol 88, pp 194-203, issn 0029-8018, 10 p.Article

On the surface kinematics of microscale breaking wind wavesPEIRSON, William L; BANNER, Michael L.Geophysical monograph. 2002, Vol 127, pp 17-22, issn 0065-8448Article

Dynamics of large turbulent structures in a steady breakerRODRIGUEZ-RODRIGUEZ, Javier; MARUGAN-CRUZ, Carolina; ALISEDA, Alberto et al.Experimental thermal and fluid science. 2011, Vol 35, Num 2, pp 301-310, issn 0894-1777, 10 p.Article

Spilling breakersDUNCAN, J. H.Annual review of fluid mechanics. 2001, Vol 33, pp 519-547, issn 0066-4189Article

Beach-profile evolution under spilling and plunging breakersPING WANG; EBERSOLE, Bruce A; SMITH, Ernest R et al.Journal of waterway, port, coastal, and ocean engineering. 2003, Vol 129, Num 1, pp 41-46, issn 0733-950X, 6 p.Article

The mean and turbulent flow structure of a weak hydraulic jumpMISRA, S. K; KIRBY, J. T; BROCCHINI, M et al.Physics of fluids (1994). 2008, Vol 20, Num 3, issn 1070-6631, 035106.1-035106.21Article

The dynamics of strong turbulence at free surfaces. Part 1. DescriptionBROCCHINI, M; PEREGRINE, D. H.Journal of Fluid Mechanics. 2001, Vol 449, pp 225-254, issn 0022-1120Article

Simultaneous quantitative flow measurement using PIV on both sides of the air-water interface for breaking wavesBELDEN, Jesse; TECHET, Alexandra H.Experiments in fluids. 2011, Vol 50, Num 1, pp 149-161, issn 0723-4864, 13 p.Article

Dissipation regimes for short wind wavesCAULLIEZ, Guillemette.Journal of geophysical research. Oceans (Print). 2013, Vol 118, Num 2, pp 672-684, issn 2169-9275, 13 p.Article

A quantitative analysis of energy dissipation among three typical air entrainment phenomenaHOQUE, Ashabul; AOKI, Shin-Ichi.Environmental fluid mechanics (2001). 2005, Vol 5, Num 4, pp 325-340, issn 1567-7419, 16 p.Article

Three-dimensional reversed horseshoe vortex structures under broken solitary wavesFARAHANI, Rozita J; DALRYMPLE, Robert A.Coastal engineering. 2014, Vol 91, pp 261-279, issn 0378-3839, 19 p.Article

Experimental investigation of wave breaking criteria based on wave phase speedsSTANSELL, Paul; MACFARLANE, Colin.Journal of physical oceanography. 2002, Vol 32, Num 5, pp 1269-1283, issn 0022-3670Article

Void fraction measurements beneath plunging and spilling breaking wavesROJAS, G; LOEWEN, M. R.Journal of geophysical research. 2010, Vol 115, Num C8, issn 0148-0227, C08001.1-C08001.16Article

A local model for the simulation of two-dimensional spilling breaking wavesMUSCARI, Roberto; DI MASCIO, Andrea.Journal of marine science and technology. 2003, Vol 8, Num 2, pp 61-67, issn 1023-2796, 7 p.Article

The wave breaking phenomena as a tool for environmental friendly shore protectionKABDASLI, M. S; TÜRKER, U.Water science and technology. 2002, pp 153-160, issn 0273-1223, isbn 1-84339-425-1, 8 p.Conference Paper

The dynamics of strong turbulence at free surfaces. Part 2. Free-surface boundary conditionsBROCCHINI, M; PEREGRINE, D. H.Journal of Fluid Mechanics. 2001, Vol 449, pp 255-290, issn 0022-1120Article

Assessment of chemical dispersant effectiveness in a wave tank under regular non-breaking and breaking wave conditionsZHENGKAI LI; LEE, Kenneth; KING, Thomas et al.Marine pollution bulletin. 2008, Vol 56, Num 5, pp 903-912, issn 0025-326X, 10 p.Article

Breaking criteria and energy losses for three-dimensional wave breakingWU, Chin H; NEPF, H. M.Journal of geophysical research. 2002, Vol 107, Num C10, pp 41.1-41.18, issn 0148-0227Article

Simulation of spilling breaking waves using a two phase flow CFD modelZHENGYI WANG; QINGPING ZOU; REEVE, Dominic et al.Computers & fluids. 2009, Vol 38, Num 10, pp 1995-2005, issn 0045-7930, 11 p.Article

Plunging to spilling transition in corner surface waves in the wake of a partially submerged vertical plateMARTINEZ-LEGAZPI, P; RODRIGUEZ-RODRIGUEZ, J; MARUGAN-CRUZ, C et al.Experiments in fluids. 2013, Vol 54, Num 1, issn 0723-4864, 541437.1-541437.11Article

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