Massimo Fiorentini
University of Wollongong
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Publication
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ASME 2011 30th International Conference on Ocean, Offshore and Arctic Engineering | 2011
Brad Stappenbelt; Massimo Fiorentini; Paul Cooper; Song-Ping Zhu; Jean-Roch Nader
One of the objectives of studies regarding the performance of floating oscillating water column (OWC) wave energy conversion devices is the prediction of the heave motion of the chamber and the water column. This paper presents a method to evaluate the parameters involved in the dynamics of partially submerged bodies in order to predict the coupled movement of the chamber and the water column in the frequency domain. System identification was performed and a lumped parameter model of the heave motions of a floating OWC was proposed. A novel approach utilising the reverse SISO method was employed to allow frequency dependent parameters for both the floating structure and the oscillating water column to be determined from several forced vibration experiments. Experimental results under forced vibration and wave excitation agree reasonably well with the dynamic model established.© 2011 ASME
Energy and Buildings | 2015
Massimo Fiorentini; Paul Cooper; Zhenjun Ma
Applied Energy | 2017
Massimo Fiorentini; Josh Wall; Zhenjun Ma; Julio H. Braslavsky; Paul Cooper
Energy Procedia | 2015
Massimo Fiorentini; Paul Cooper; Zhenjun Ma; D A Robinson
Energies | 2018
Gianluca Serale; Massimo Fiorentini; Alfonso Capozzoli; Daniele Bernardini; Alberto Bemporad
Archive | 2015
Massimo Fiorentini; Paul Cooper; Zhenjun Ma; Josh Wall
Energy Conversion and Management | 2018
Gianluca Serale; Massimo Fiorentini; Alfonso Capozzoli; Paul Cooper; Marco Perino
Archive | 2016
Massimo Fiorentini; Georgios Kokogiannakis; Warwick Jackson; Zhenjun Ma; Paul Cooper
Energy and Buildings | 2017
Theofanis Ch. Psomas; Massimo Fiorentini; Georgios Kokogiannakis; Per Heiselberg
Archive | 2016
Zhenjun Ma; Rui Yan; Massimo Fiorentini; Paul Cooper
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Commonwealth Scientific and Industrial Research Organisation
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