Field performance assessment of a hydrokinetic turbine

International Journal of Marine Energy - Tập 14 - Trang 125-142 - 2016
Robert J. Cavagnaro1, Brian Polagye1
1Northwest National Marine Renewable Energy Center, University of Washington, Mechanical Engineering, Stevens Way, Box 352600, Seattle, WA 98195, United States

Tài liệu tham khảo

R. Sanchez, Technology Readiness Assessment Guide, DOE G 413.3-4A, US Department of Energy, 2011. J. Weber, R. Costello, J. Ringwood, WEC technology performance levels (TPLs) – metric for successful development of economic WEC technology, in: 10th European Wave and Tidal Energy Conference, 2–5 September, Alborg, Denmark, 2013. Consul, 2013, Blockage effects on the hydrodynamic performance of a marine cross-flow turbine, Philos. Trans. Ser. A Math. Phys. Eng. Sci., 371, 20120299 B. Polagye, R. Cavagnaro, A. Niblick, Micropower from Tidal Turbines, in: ASME Fluids Division Summer Meeting, Incline Village, NV, July 8–11, 2013. P. Bachant, M. Wosnik, Reynolds number dependence of cross-flow turbine performance and near-wake characteristics, in: Proc. of the 2nd Marine Energy, Seattle, WA, 2014. Retrieved from <http://www.globalmarinerenewable.com/images/pdf/METS_PAPERS_VII/89-Bachant.pdf>. Gaurier, 2015, Tidal energy “round robin” tests comparisons between towing tank and circulating tank results, Int. J. Mar. Energy, 12, 87, 10.1016/j.ijome.2015.05.005 W.J. McCroskey, The phenomenon of dynamic stall (No. NASA-A-8464), National Aeronautics and Space Administration, Moffett Field CA, Ames Research Center, 1981. Alcorn, 2014 Roos, 2006, Optimal selection of motor and gearhead in mechatronic applications, Mechatronics, 16, 63, 10.1016/j.mechatronics.2005.08.001 R. Cavagnaro, B. Polagye, An evaluation of blockage corrections for a helical cross-flow turbine, in: Proceedings of the 3rd Oxford Tidal Energy Workshop, OTEW14, Oxford, UK, 7–8 April, 2014. Shiono, 2000, An experimental study of the characteristics of a Darrieus turbine for tidal power generation, Electr. Eng. Jpn., 132, 38, 10.1002/1520-6416(200008)132:3<38::AID-EEJ6>3.0.CO;2-E Paraschivoiu, 2002 Chamorro, 2015, Effects of energetic coherent motions on the power and wake of an axial-flow turbine, Phys. Fluids, 27, 055104, 10.1063/1.4921264 Mori, 2007, Noise of acoustic Doppler velocimeter data in bubbly flow, J. Eng. Mech. Am. Soc. Civ. Eng., 133, 122, 10.1061/(ASCE)0733-9399(2007)133:1(122) Emery, 2001 J. Thomson, L. Kilcher, M. Richmond, J. Talbert, A. DeKlerk, B. Polagye, R. Cienfuegos, Tidal turbulence spectra from a compliant mooring, in: Proceedings of the 1st Marine Energy Technology Symposium, METS, Washington, D.C., 2013, pp. 1–9. Thomson, 2012, Measurements of turbulence at two tidal energy sites in puget sound, WA, IEEE J. Oceanic Eng., 37, 363, 10.1109/JOE.2012.2191656 T. Henriques, T. Hedges, I. Owen, R. Poole, The Effect of wave–current interaction on the near-wake of horizontal axis tidal stream turbines, in: Proceedings of the 11th European Wave and Tidal Energy Conference, 6–11 September, Nantes, France, 2015. Luznik, 2013, The effect of surface waves on the performance characteristics of a model tidal turbine, Renewable Energy, 58, 108, 10.1016/j.renene.2013.02.022 R. Cavagnaro, B. Fabien, B. Polagye, Control of a helical cross-flow current turbine, in: Proceedings of the 2nd Marine Energy Technology Symposium, Global Marine Renewable Energy Conference, Seattle, WA, April 15–17, 2014. Bachant, 2015, Performance measurements of cylindrical- and spherical-helical cross-flow marine hydrokinetic turbines, with estimates of exergy efficiency, Renewable Energy, 74, 318, 10.1016/j.renene.2014.07.049 Kirke, 2011, Tests on ducted and bare helical and straight blade Darrieus hydrokinetic turbines, Renewable Energy, 36, 3013, 10.1016/j.renene.2011.03.036 ASME (2005) PTC 19.1-2005 Test Uncertainty, ISBN 0791830101, American Society of Mechanical Engineers.