Download e-book for iPad: Electrical Design for Ocean Wave and Tidal Energy Systems by Raymond Alcorn, Dara O'Sullivan
By Raymond Alcorn, Dara O'Sullivan
Electrical layout for Ocean Wave and Tidal power Systems offers an electric engineering viewpoint on offshore energy stations and their integration to the grid. With contributions from a panel of major overseas specialists, this ebook is vital examining for these operating in ocean strength improvement and renewable strength.
Wave and tidal strength engineering has constructed strongly long ago decade, with hundred-MW arrays of complete scale grid attached wave and tidal units deliberate for the following few years. Electrical layout for Ocean Wave and Tidal power Systems presents an electric engineering point of view on those offshore strength stations and their integration to the grid. subject matters lined contain: the choice and sizing of turbines and their interplay with energy electronics, energy cables, connectors and umbilicals; grid integration and gear caliber concerns; power garage; the implementation of keep watch over structures in ocean strength units modelling and simulation; the relative costings of varied structures; and the impact of electric layout on total undertaking lifetime fee.
With contributions from a panel of top overseas specialists, Electrical layout for Ocean Wave and Tidal strength Systems is key examining for electric layout engineers, researchers and scholars operating in ocean strength improvement and renewable power.
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Extra info for Electrical Design for Ocean Wave and Tidal Energy Systems
In case of the SeaGen device the SCIG, the gearbox and the brake have to be separately protected. On the one hand, this increases the risk of a seal-failure. On the other hand, the design and construction of a watertight nacelle is avoided and components like electrical machines for subsea operation are available OTS. In  it is described in detail how the generator system for the Seaflow device, a predecessor version of the SeaGen device, was designed from standard components used in wind energy and the oil and gas industry.
2 Comparison of generator technologies In wind energy currently four different generator technologies are used for large wind turbines , namely PMSG, DFIG, SCIG, SG, which on a first glance are also candidate systems for TECs. However due to some drawbacks of DFIGs and SGs – maintenance requirements due to slip-ring wear (DFIG) and complex rotor structure (SG) – these types of generator systems do not appear to be appropriate technologies for TECs and are rarely – if at all – used in this field.
2000–2005.  A. F. d. O. Falc~ao, ‘Control of an oscillating-water-column wave power plant for maximum energy production’, Applied Ocean Research, vol. 24, pp. 73–82, 2002.  D. V. Evans, ‘The oscillating water column wave-energy device’, IMA Journal of Applied Mathematics, vol. 22, pp. 423–433, 1978.  T. Setoguchi and M. Takao, ‘Current status of self-rectifying air turbines for wave energy conversion’, Energy Conversion and Management, vol. 47, pp. 2382–2396, 2006.  A. R. Plummer and M.
Electrical Design for Ocean Wave and Tidal Energy Systems by Raymond Alcorn, Dara O'Sullivan