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dc.contributor.authorMossa, Michele
dc.contributor.authorTermini, Donatella
dc.contributor.authorDavies, Peter A.
dc.date.accessioned2019-09-01T09:09:08Z-
dc.date.available2019-09-01T09:09:08Z-
dc.date.issued2019
dc.identifier.isbn9783038975946
dc.identifier.urihttp://oers.taiwanmooc.org/jspui/handle/123456789/138711-
dc.language.isoeng
dc.publisherMDPI - Multidisciplinary Digital Publishing Institute
dc.relation.urihttps://mdpi.com/books/pdfview/book/1163
dc.rights.uriCC BY-NC-ND (姓名標示-非商業性-禁止改作)
dc.sourceDOAB
dc.subject.classificationGeneral and Civil Engineering --- Technology (General)
dc.subject.otherbreaking waves; turbulence invariants; laboratory experiments; flow-through system; tidal inlets; residence time; coastal lagoon; MIKE 3 FM (HD &; TR); MIKE 21 FM (HD); dense jet; current flow; velocity; trajectory; turbulence; dissipation; rivers; meanders; turbulence; secondary motion; prediction; bedrock canyon; ADCP; eddy viscosity; bed shear stress; spatial analysis; smoothed particle hydrodynamics models; physical modelling; plunging breaking waves; vorticity; turbulent jet; wavea€“current interaction; spectral dissipation; bottom friction; numerical model; hydrodynamic model; spectral model; wave attenuation; energy dissipation; drag coefficient; flexible vegetation; <i>Spartina maritima</i>; vegetation patch; wake region; submerged ratio; SVF; channel confluences; junction angle; flow deflection zone; flow retardation zone; flow separation zone; numerical modelling; PANORMUS; jets; waves; turbulence; mixing; diffusion; advection; river mouth; flow mixing; nonlinear shallow water equations; macrovortices; sub-grid turbulence; seabed friction; flow resistance; roughness; gravel-bed rivers; casting technique; CFD; Kelvina€“Helmholtz; billow; lobe; cleft; gravity current; surface waves; inclined negatively buoyant jets; regular waves; dilution; sea discharges; rivers; maritime areas; turbulent processes
dc.titleTurbulence in River and Maritime Hydraulics
dc.type電子教科書
dc.classification應用科學類
Theme:教科書-應用科學類

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