Pregled bibliografske jedinice broj: 988571
Coupled FEMDEM/Fluids for coastal engineers with special reference to armour stability and breakage
Coupled FEMDEM/Fluids for coastal engineers with special reference to armour stability and breakage // Geomechanics and Engineering, 4 (2009), 1; 797-805 (međunarodna recenzija, članak, znanstveni)
CROSBI ID: 988571 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Coupled FEMDEM/Fluids for coastal engineers with special reference to armour stability and breakage
Autori
Latham, JP ; Mindel, J ; Xiang, J ; Guises, R ; Garcia, X ; Pain. C ; Gorman, G ; Piggott, M ; Munjiza, A ;
Izvornik
Geomechanics and Engineering (2005-307X) 4
(2009), 1;
797-805
Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni
Ključne riječi
wave–structure interaction, discrete element method, finite element method, fluid coupling, breakwaters, concrete armour units
Sažetak
Sea-level rise and increased storminess present huge challenges to coastal engineers worldwide. The seaward slope of many breakwaters and shoreline defence structures consists of thousands of interlocking units of concrete or rock making up a massive granular defence against wave attack. The units are placed freely to form an armour layer which is intended to both dissipate wave energy and remain structurally stable. Design guidance on the mass and shape of these units is based on empirical equations derived from Froude scale physical model tests. The two main failure modes for concrete armour layers are displacement (hydraulic instability) and breakage (structural instability) which are strongly coupled. Breakage mechanisms cannot all be faithfully reproduced under scaled physical models. Fundamental understanding of the forces governing such wave-structure interaction remains poor and unit breakages continue to baffle the designers of concrete armour units. This paper illustrates a range of DEM and FEMDEM methods being developed to model the granular solid skeleton of freely packed brittle units. Such discrete element methods are increasingly being used by engineers for solids modelling. They are especially powerful when coupled with a CFD model which can resolve ocean wave dynamics. The aim is to describe a framework for coupled modelling technologies applicable to coastal engineering problems. Preliminary simulation test cases, still at proof of concept stage, but based on a wealth of validation studies are presented. Thus, we report a snap-shot of progress towards a future where designers combine multi-physics numerical technology with knowledge from scaled physical models for a better understanding of wave energy turbulence, block movement, and internal stresses within armour units.
Izvorni jezik
Engleski
Znanstvena područja
Geofizika, Građevinarstvo, Interdisciplinarne tehničke znanosti
POVEZANOST RADA
Ustanove:
Fakultet građevinarstva, arhitekture i geodezije, Split,
Hrvatska akademija znanosti i umjetnosti
Profili:
Ante Munjiza
(autor)
Citiraj ovu publikaciju:
Časopis indeksira:
- Web of Science Core Collection (WoSCC)
- Science Citation Index Expanded (SCI-EXP)
- SCI-EXP, SSCI i/ili A&HCI