- ORCID iD
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0000-0001-8817-0431
- Bio (via ORCID)
- Dr. ir. Corrado Altomare is a Post-doctoral Researcher at the department of Civil Engineering (research unit of Coastal Engineering, Bridges and Roads) of Ghent University (Belgium). He has 10 years of experience in research, consultancy, and modelling of coastal structures. This work has been done both in an academic environment (Technical University of Catalonia of Barcelona, Spain; Ghent University in Belgium) as well as for real applications (Flanders Hydraulics Re-search). He is experienced in coastal engineering, with strong expertise in physical modelling. He has been involved in engineering consultancy and research on coastal protection and coastal safety, harbors and marinas design for Belgian coast mainly, as well as for Spanish and Italian coast. He is co-developer of DualSPHysics numerical model. Moreover he contributed to the EurOtop manual (2nd Edition) and to the Guidelines for Safety Assessment of the Belgian Coast.
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- Journal Article
- A1
- open access
Validation of RANS modelling for wave interactions with sea dikes on shallow foreshores using a large-scale experimental dataset
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- Miscellaneous
- open access
CREST Final scientific report : take home messages & project results
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Influence of directional spreading on wave overtopping of sea dikes with gentle and shallow foreshores
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- Journal Article
- A1
- open access
Benchmarking of numerical models for wave overtopping at dikes with shallow mildly sloping foreshores : accuracy versus speed
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- Journal Article
- A1
- open access
Relative magnitude of infragravity waves at coastal dikes with shallow foreshores : a prediction tool
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Numerical simulation of the full non-linear behaviour Wave Energy Converters
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Non-repeatability, scale- and model effects in laboratory measurement of impact loads induced by an overtopped bore on a dike mounted wall
(2019) PROCEEDINGS OF THE ASME 38TH INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE AND ARCTIC ENGINEERING, 2019, VOL 3. Volume 3: Structures, Safety, and Reliability. -
SPH simulation of floating structures with moorings
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- Journal Article
- A1
- open access
Experimental study of a moored floating oscillating water column wave-energy converter and of a moored cubic box
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Non-linear wave generation and absorption using open boundaries within DualSPHysics