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3-D scale model study of wave run-up, overtopping and damage in a rubble-mound breakwater subject to oblique extreme wave conditions

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dc.contributor.author Santos, J. A. pt_BR
dc.contributor.author Pedro, F. pt_BR
dc.contributor.author Coimbra, M. pt_BR
dc.contributor.author Figuero, A. pt_BR
dc.contributor.author Fortes, C. J. E. M. pt_BR
dc.contributor.author Sande, J. pt_BR
dc.contributor.author Körner, M. pt_BR
dc.contributor.author Lemos, R. pt_BR
dc.contributor.author Bornschein, A. pt_BR
dc.contributor.author Weimper, J. pt_BR
dc.contributor.author van den Bos, J. pt_BR
dc.contributor.author Dost, B. pt_BR
dc.contributor.author Hofland, B. pt_BR
dc.contributor.author Carvalho, R. pt_BR
dc.contributor.author Alvarellos, A. pt_BR
dc.contributor.author Peña, E. pt_BR
dc.contributor.author Pohl, R. pt_BR
dc.contributor.author Kerpen, N.B. pt_BR
dc.contributor.author Reis, M. T. L. G. V. pt_BR
dc.date.accessioned 2019-09-18T14:27:59Z pt_BR
dc.date.accessioned 2019-10-25T11:00:08Z
dc.date.available 2019-09-18T14:27:59Z pt_BR
dc.date.available 2019-10-25T11:00:08Z
dc.date.issued 2019-08 pt_BR
dc.identifier.citation https://10.4028/www.scientific.net/DDF.396.32 pt_BR
dc.identifier.isbn 1662-9507 pt_BR
dc.identifier.uri https://repositorio.lnec.pt/jspui/handle/123456789/1011816
dc.description.abstract A set of scale-model tests carried out to enlarge the range of wave steepness values analysed in run-up, overtopping and armour layer stability studies, focusing on oblique extreme wave conditions and on their effects on a gentler slope breakwater’s trunk armour and roundhead, is presented in this paper. A stretch of a rubble mound breakwater (head and part of the adjoining trunk, with a slope of 1(V):2(H)) was built in a wave basin at the Leibniz University Hannover to assess, under extreme wave conditions (wave steepness of 0.055) with different incident wave angles (from 40º to 90º), the structure behaviour in what concerns wave run-up, wave overtopping and damage progression of the armour layer. Two types of armour elements (rock and Antifer cubes) were tested. Non-intrusive methodologies including a new application of laser scanning technique for the assessment of both armour layer damage and wave run-up and overtopping were used. It is expected that such work will contribute also with data to improve empirical formulas as well as to validate complex numerical model for wave-structure interaction. pt_BR
dc.language.iso eng pt_BR
dc.publisher Trans Tech Publications Ltd, Switzerland pt_BR
dc.relation info:eu-repo/grantAgreement/EC/H2020/654110/EU pt_BR
dc.rights restrictedAccess pt_BR
dc.subject Physical modelling pt_BR
dc.subject 3D-Wave basin pt_BR
dc.subject Instrumentation pt_BR
dc.title 3-D scale model study of wave run-up, overtopping and damage in a rubble-mound breakwater subject to oblique extreme wave conditions pt_BR
dc.type workingPaper pt_BR
dc.description.pages 32-41pp. pt_BR
dc.description.volume Volume 396 pt_BR
dc.description.sector DHA/NPE pt_BR
dc.description.magazine Defect and Diffusion Forum pt_BR
dc.contributor.peer-reviewed SIM pt_BR
dc.contributor.academicresearchers SIM pt_BR
dc.contributor.arquivo NAO pt_BR


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