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Results 21-30 of 48 (Search time: 0.005 seconds).
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PreviewIssue DateTitleAuthor(s)
2016Efficiency improvement of submerged point absorbing wave energy converters by utilizing motion-couplingMeng, F.; Cazzolato, B.; Ding, B.; Arjomandi, M.; Australian Ocean Renewable Energy Symposium (18 Oct 2016 - 20 Oct 2016 : Melbourne)
2016Effect of wall confinement on a wind turbine wakeSedaghatizadeh, N.; Arjomandi, M.; Kelso, R.; Cazzolato, B.; Ghayesh, M.; 20th Australasian Fluid Mechanics Conference (5 Dec 2016 - 8 Dec 2016 : Perth, Australia)
2017Study of fully submerged point absorber wave energy converter - modelling, simulation and scaled experimentDing, B.; da Silva, L.; Sergiienko, N.; Meng, F.; Piper, J.; Bennetts, L.; Wagner, M.; Cazzolato, B.; Arjomandi, M.; The 32nd International Workshop on Water Waves and Floating Bodies (IWWWFB) (23 Apr 2017 - 26 Apr 2017 : Dalian, China)
2020Nonlinear hydrodynamics analysis of a submerged spherical point absorber with asymmetric mass distributionMeng, F.; Rafiee, A.; Ding, B.; Cazzolato, B.; Arjomandi, M.
2018Spatial and temporal concentration of hydrokinetic energy in the wake of a bluff bodyManickam Sureshkumar, E.; Arjomandi, M.; Cazzolato, B.; Dally, B.
2019Considerations on the control design for a three-tether wave energy converterSergiienko, N.; Cazzolato, B.; Arjomandi, M.; Ding, B.; Souza Pinheiro da Silva, L.
2019The application of modal analysis to the design of multi-mode point absorber wave energy convertersDing, B.; Sergiienko, N.; Meng, F.; Cazzolato, B.; Hardy, P.; Arjomandi, M.
2020Turbulence characteristics in the wake of a heliostat in an atmospheric boundary layer flowJafari, A.; Emes, M.; Cazzolato, B.; Ghanadi, F.; Arjomandi, M.
2015Harnessing hydro-kinetic energy from wake-induced vibration using virtual mass spring damper systemFarrokhi Derakhshandeh, J.; Arjomandi, M.; Cazzolato, B.; Dally, B.
2016An optimal arrangement of mooring lines for the three-tether submerged point-absorbing wave energy converterSergiienko, N.; Cazzolato, B.; Ding, B.; Arjomandi, M.