Power variability of tidal-stream energy and implications for electricity supply

Temporal variability in renewable energy presents a major challenge for electrical grid systems. Tides are considered predictable due to their regular periodicity; however, the persistence and quality of tidal-stream generated electricity is unknown. This paper is the first study that attempts to ad...

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Veröffentlicht in:Energy (Oxford) 2019-09, Vol.183, p.1061-1074
Hauptverfasser: Lewis, Matt, McNaughton, James, Márquez-Dominguez, Concha, Todeschini, Grazia, Togneri, Michael, Masters, Ian, Allmark, Matthew, Stallard, Tim, Neill, Simon, Goward-Brown, Alice, Robins, Peter
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Sprache:eng
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Zusammenfassung:Temporal variability in renewable energy presents a major challenge for electrical grid systems. Tides are considered predictable due to their regular periodicity; however, the persistence and quality of tidal-stream generated electricity is unknown. This paper is the first study that attempts to address this knowledge gap through direct measurements of rotor-shaft power and shore-side voltage from a 1 MW, rated at grid-connection, tidal turbine (Orkney Islands, UK). Tidal asymmetry in turbulence parameters, flow speed and power variability were observed. Variability in the power at 0.5 Hz, associated with the 10-min running mean, was low (standard deviation 10–12% of rated power), with lower variability associated with higher flow speed and reduced turbulence intensity. Variability of shore-side measured voltage was well within acceptable levels (∼0.3% at 0.5 Hz). Variability in turbine power had
ISSN:0360-5442
1873-6785
DOI:10.1016/j.energy.2019.06.181