Page 281 - Fundamentals of Ocean Renewable Energy Generating Electricity From The Sea
P. 281
268 Fundamentals of Ocean Renewable Energy
REFERENCES
[1] W. Su, J. Wang, J. Roh, Stochastic energy scheduling in microgrids with intermittent
renewable energy resources, IEEE Trans. Smart Grid 5 (4) (2014) 1876–1883.
[2] S.S. Rao, S.S. Rao, Engineering Optimization: Theory and Practice, John Wiley & Sons,
New York, NY, 2009.
[3] S. Boyd, L. Vandenberghe, Convex Optimization, Cambridge University Press, Cambridge,
2004.
[4] A. Neubert, A. Shah, W. Schlez, Maximum yield from symmetrical wind farm layouts, in:
Proceedings of DEWEK, 2010.
[5] J.S. González, M.B. Payán, J.M.R. Santos, F. González-Longatt, A review and recent
developments in the optimal wind-turbine micro-siting problem, Renew. Sustain. Energy Rev.
30 (2014) 133–144.
[6] S. Frandsen, On the wind speed reduction in the center of large clusters of wind turbines,
J. Wind Eng. Ind. Aerodyn. 39 (1–3) (1992) 251–265.
[7] S. Chowdhury, J. Zhang, A. Messac, L. Castillo, Unrestricted wind farm layout optimization
(UWFLO): investigating key factors influencing the maximum power generation, Renew.
Energy 38 (1) (2012) 16–30.
[8] M.M. Yelmule, E.A. Vsj, CFD predictions of NREL phase VI rotor experiments in
NASA/AMES wind tunnel, Int. J. Renew. Energy Res. 3 (2) (2013) 261–269.
[9] R. Banos, F. Manzano-Agugliaro, F.G. Montoya, C. Gil, A. Alcayde, J. Gómez, Optimization
methods applied to renewable and sustainable energy: a review, Renew. Sustain. Energy Rev.
15 (4) (2011) 1753–1766.
[10] C. Legrand, Assessment of Tidal Energy Resource: Marine Renewable Energy Guides,
European Marine Energy Centre, Orkney, UK, 2009.
[11] L.E. Myers, A.S. Bahaj, An experimental investigation simulating flow effects in first
generation marine current energy converter arrays, Renew. Energy 37 (1) (2012) 28–36.
[12] D.M. Culley, S.W. Funke, S.C. Kramer, M.D. Piggott, Integration of cost modelling within
the micro-siting design optimisation of tidal turbine arrays, Renew. Energy 85 (2016)
215–227.
[13] R. Vennell, Exceeding the Betz limit with tidal turbines, Renew. Energy 55 (2013)
277–285.
[14] R. Vennell, Tuning turbines in a tidal channel, J. Fluid Mech. 663 (2010) 253–267.
[15] C. Garrett, P. Cummins, The efficiency of a turbine in a tidal channel, J. Fluid Mech. 588
(2007) 243–251.
[16] J.F. Atwater, G.A. Lawrence, Power potential of a split tidal channel, Renew. Energy 35 (2)
(2010) 329–332.
[17] B.L. Polagye, P.C. Malte, Far-field dynamics of tidal energy extraction in channel networks,
Renew. Energy 36 (1) (2011) 222–234.
[18] P.F. Cummins, The extractable power from a split tidal channel: an equivalent circuit analysis,
Renew. Energy 50 (2013) 395–401.
[19] C. Garrett, P. Cummins, The power potential of tidal currents in channels, Proc. Roy. Soc. 461
(2005) 2563–2572.
[20] A. Babarit, On the park effect in arrays of oscillating wave energy converters, Renew. Energy
58 (2013) 68–78.
[21] M. Göteman, J. Engström, M. Eriksson, J. Isberg, M. Leijon, Methods of reducing power
fluctuations in wave energy parks, J. Renew. Sustain. Energy 6 (4) (2014) 043103.