STABILITY OF RIPRAP AND CONCRETE BLOCKS IN HIGHLY TURBULENT FLOWS.
M. Escarameia, Roland May, IZBASH
Abstract
M. Escarameia, Roland May, IZBASH
Abstract
Keywords HR WALLINGFORD, HYDRAULICS RESEARCH BLOCKS, STABILITY, CONCRETE, RIPRAP, TURBULENT, FLOW, FORMULAE, EFFECT, TURBULENCE, QUANTITATIVE, EXPERIMENTS, STUDIES, CHANNELS, PROTECTION, STONE, TESTS, FLAT, BEDS, BANKS, SLOPES, FILTERS, PERFORMANCE, EQUATIONS, COEFFICIENTS, INTENSITY, VELOCITY, WATER, DEPTH, DOWNSTREAM, SCOUR, PREVENTION, CURRENTS, PARTICLES, MOVEMENT, INITIATION, REVETMENTS, RIGS, MATERIALS, FLUMES, UNDERLAYERS, GRANULAR, ARMOUR, LAYERS, HYDRAULIC, STRUCTURES, PROFILES, HYDRAULICS... Show All
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Keywords HR WALLINGFORD, HYDRAULICS RESEARCH BLOCKS, STABILITY, CONCRETE, RIPRAP, TURBULENT, FLOW, FORMULAE, EFFECT, TURBULENCE, QUANTITATIVE, EXPERIMENTS, STUDIES, CHANNELS, PROTECTION, STONE, TESTS, FLAT, BEDS, BANKS, SLOPES, FILTERS, PERFORMANCE, EQUATIONS, COEFFICIENTS, INTENSITY, VELOCITY, WATER, DEPTH, DOWNSTREAM, SCOUR, PREVENTION, CURRENTS, PARTICLES, MOVEMENT, INITIATION, REVETMENTS, RIGS, MATERIALS, FLUMES, UNDERLAYERS, GRANULAR, ARMOUR, LAYERS, HYDRAULIC, STRUCTURES, PROFILES, HYDRAULICS... Show All
Key concepts: Riprap, Hydraulics, Turbulence, Geotechnical engineering, Geology, Flow (mathematics), Armour, Hydraulic structure