[1]
M.J. Khan, M.T. Iqbal, J.E. Quaicoe. River current energy conversion systems: Progress, prospects and challenges[J]. Renewable and Sustainable Energy Reviews, 2008(12): 2177-2193.
DOI: 10.1016/j.rser.2007.04.016
Google Scholar
[2]
M. El-Samanoudy, A.A.E. Ghorab, Sh.Z. Youssef. Effect of some design parameters on the performance of a Giromill vertical axis wind turbine[J]. Ain Shams Engineering Journal, 2010, 1(1): 85-95.
DOI: 10.1016/j.asej.2010.09.012
Google Scholar
[3]
Scottish Enterprises, Marine Renewable (Wave and Tidal) Opportunity Review, Introduction to the Marine Renewable Sector, December (2005).
Google Scholar
[4]
Salter, S., Pitch–Control for Vertical-Axis Marine-Current Generators, World Renewable Energy Conference Aberdeen, (2005).
Google Scholar
[5]
Coiro, D.P., De Marco, A., Nicolosi, F., Melone, S. & Montella, F., Dynamic Behaviour of the Patented Kobold Tidal Current Turbine: Numerical and Experimental Aspects, Acta Polytechnica, 45(3), (2005).
DOI: 10.14311/718
Google Scholar
[6]
Shawn Armstrong, Andrze Fiedler, Stephen Tullis. Flow separation on a high Reynolds number, high solidity vertical axis wind turbine with straight and canted blades and canted blades with fence[J]s. Renewable Energy 2012(41): 13-22.
DOI: 10.1016/j.renene.2011.09.002
Google Scholar
[7]
Sylvain Antheaumea, Thierry Matreb, Jean-Luc Achard. Hydraulic Darrieus turbines efficiency for free fluid flow conditions versus power farms conditions[J]. Renewable Energy, 2008 (33): 2186-2198.
DOI: 10.1016/j.renene.2007.12.022
Google Scholar
[8]
Islam, M., Ting, David S. -K. & Fartaj, A., erodynamic Models for Darrieus-Type Straight-Bladed Vertical Axis Wind Turbines, Renewable and Sustainable Energy Reviews, 12(4), (2008).
DOI: 10.1016/j.rser.2006.10.023
Google Scholar