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Renewable Energy in Marine Environment

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

moored floating wave-energy converter; levelized cost of electricity (LCOE); MILDwave; marine energy; coupling; renewable energy; end fitting; multi-DOF WECs; HVAC; hydraulic; OceanWave3D; ocean energy; wave flume experiment; capacity factor; spatial resolution; WEC farm; time scale; wave energy converter; control system; offshore wind turbines; nonlinear wave condition; design optimization; NEMOH; ocean renewable energy; scour protection damage; wind speed; site measurements; DualSPHysics; Caspian Sea; jacket; laboratory tests; turbulence; sealing performance; oscillating water column; LCOE; HVDC; offshore wind farm; turbulence kinetic energy; wave propagation; marine environment; far field; wide-graded materials; ocean renewable technologies; optical measurements; numerical modeling; Mild-slope wave propagation model; Brazilian ocean energy; short crested waves; pressure penetration; PTO system tuning; climate change conditions; wave energy converters; experimental validation; model coupling; open boundaries; mooring-line tension; DC collection; unbonded flexible pipe; 6 degrees of freedom motion; WECwakes project; ADCP; ocean source potential; near field; offshore turbines; wave energy converter arrays; cost-benefit analysis; smoothed particle hydrodynamics; temperature; energy economics; linearization; waves-current interaction; length scale; erosion patterns; numerical coupling; variable depth effects; BEM; PTO system; PTO-sim; wave energy; wave-current interaction; large scale experiments; wave–structure interaction; wave propagation model; sediment transport; offshore wind; WEC array; periodic lateral boundaries; WEC-sim; turbulence intensity; acoustic measurements; scour

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-03928-529-7

País de edición

Suiza