Development of a simplified analytical model for a passive inertial system solicited by wave motion
Tài liệu tham khảo
Langhamer, 2010, Wave power-sustainable energy or environmentally costly? A review with special emphasis on linear wave energy converters, Renew. Sustain. Energy Rev., 14, 1329, 10.1016/j.rser.2009.11.016
A.F. de O. Falcão, Modelling of wave energy converters, Instituto Superior Tecnico, Lisboa, 2014.
Falnes, 2002
G. Bracco, E. Giorcelli, G. Mattiazzo, E. Tedeschi, M. Molinas, Control Strategies for the ISWEC Wave Energy System, in: 9th Eur. Wave Tidal Energy Conf., 2011.
Bozzi, 2013, Modeling of a point absorber for energy conversion in Italian seas, Energies, 6, 3033, 10.3390/en6063033
Ruellan, 2010, Design methodology for a SEAREV wave energy converter, IEEE Trans. Energy Convers., 25, 760, 10.1109/TEC.2010.2046808
P. Ruiz-Minguela, Progress in the development of OCEANTEC wave energy converter, in: 3rd Int. Symp. Ocean Energy, Bilbao, 2009.
McCabe, 2006, Developments in the design of the PS Frog Mk 5 wave energy converter, Renew. Energy, 31, 141, 10.1016/j.renene.2005.08.013
G. Mattiazzo, E. Giorcelli, G. Bracco, E. Giovannini, A. Fontanella, Sintesi delle attività di sviluppo di un dispositivo inerziale passivo per la produzione di energia dal moto ondoso, ENEA Report 172, 2013. <http://www.enea.it/it/Ricerca_sviluppo/documenti/ricerca-di-sistema-elettrico/energia-dal-mare/2013/rds-par2013-172.pdf>.
Folley, 2012, A review of numerical modelling of wave energy converter arrays, Ocean Renew. Energy, 7, 535
M.K. Tautra Hoen, Modelling and control of wave energy converters, Norwegian university of science and technology, 2009. <http://www.diva-portal.org/smash/get/diva2:347732/FULLTEXT01.pdf>.
Nam, 2014, Performance evaluation of the floating pendulum wave energy converter in regular and irregular waves, Int. J. Offshore Polar Eng., 24, 45
The MathWorks, Multibody Simulation – SimMechanics, 2015. <http://www.mathworks.com/products/simmechanics/> (accessed October 1, 2015).
Doblack, 2011
Toubi, 2009
Oonk, 2008
Biran, R. López-Pulido, Chapter 6 – Simple Models of Stability, in: Sh. Hydrostatics Stab., Butterworth-Heinemann, Oxford, 2014, pp. 127–169. <http://dx.doi.org/10.1016/B978-0-08-098287-8.00006-2>.
Miloh, 1977, Maneuvering hydrodynamics of ellipsoidal forms, Schriftenr. Schiffbau, 357
E. Pesman, D. Bayraktar, M. Taylan, Influence of damping on the roll motion of ships, in: 2nd Int. Conf. …, 2007, pp. 127–134. <http://web.itu.edu.tr/~pesman/Paper_ICMRT07.pdf>.
Bozzi, 2014, Wave electricity production in Italian offshore: a preliminary investigation, Renew. Energy, 62, 407, 10.1016/j.renene.2013.07.030
J.F. Langan, Chapter 4 – The continuity equation, the Reynolds number, the Froude number, in: An Introd. to Aerodyn., 1988. <http://www.yale.edu/ynhti/curriculum/units/1988/6/88.06.04.x.html>.
V. Ruggiero, Appunti del corso di architettura navale, Università degli studi di Messina, 2008. <http://ww2.unime.it/ingegneria/new/materiale/APPUNTIDELCORSODIARCHITETTURANAVALE-6dic08.pdf>.
G. Mattiazzo, E. Giorcelli, D. Poggi, Valutazione della produttività di sistemi attivi su struttura galleggiante per la generazione di energia da moto ondoso, ENEA Report 173, 2012. <http://openarchive.enea.it//handle/10840/4528>.
G. Bracco, E. Giorcelli, G. Mattiazzo, ISWEC: Design of a Prototype Model for Wave Tank Test, in: 10th Bienn. Conf. Eng. Syst. Des. Anal., Istanbul, 2010, pp. 25–31. http://dx.doi.org/10.1115/ESDA2010-24120.