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Annual Report 2014

67

NOWITECH

Norwegian Research Centre for Offshore Wind Technology

25. Raadahl, H. L., et al. “GHG emissions and energy performance of offshore wind power.” Renewable Energy.

26. See, P. C. andO. B. Fosso; “Cross-Border Transfer of Electric Power under Uncertainty: AGame of Incomplete

Information.” Energy Procedia 53: 95-103.

27. Soloot, A. H., et al. “Modeling of Wind Turbine Transformers for the Analysis of Resonant Overvoltages.”

Electric Power Systems Research.

28. Soloot, A. H., et al; “Resonant Overvoltage Assessment in Offshore Wind Farms via a Parametric Black-Box

Wind Turbine Transformer Model.” Wind Energy.

29. Sperstad, I. B., et al. “A Comparison of Single- and Multi-parameter Wave Criteria for Accessing Wind

Turbines in Strategic Maintenance and Logistics Models for Offshore Wind Farms.” Energy Procedia 53:

221-230.

30. Sætran, L. K., et al. “Performance and wake development behind two in-line and offset model wind tur-

bines - ”Blind test” experiments and calculations.”

31. Tande, J. O. G., et al. “Floating Offshore Turbines.” WIRE Energy and Environment.

32. Torres-Olguin, R. E., et al. “Experimental Verification of a Voltage Droop Control for Grid Integration of

Offshore Wind Farms Using Multi-terminal HVDC.” Energy Procedia 53: 104-113.

33. Valavi, M., et al. “Influence of Pole and Slot Combinations on Magnetic Forces and Vibration in Low-Speed

PMWind Generators”, IEEE Transactions on Magnetics.” IEEE Transactions on Magnetics 50.

34. Valavi, M., et al. “Slot Harmonic Effect on Magnetic Forces and Vibration in Low-Speed Permanent-Magnet

Machine with Concentrated Windings.” IEEE Transactions on Industry Applications 50(5).

35. Wang K, Hansen, M.O.L.; Moan, T.; “Dynamic response analysis of a floating vertical axis wind turbine

under emergency shutdown through mechanical brake and hydrodynamic brake.” Energy Procedea 53:

56-69.

36. Wang K, Luan, C.; Moan, T.; Hansen, M.O. “Comparative study of a FVAWT and a FHAWT with a semi-sub-

mersible floater.” Proceedings of the Twenty-fourth (2014) International Ocean and Polar Engineering

Conference.

37. Welte, T. and K. Wang; “Models for lifetime estimation: an overview with focus on applications to wind

turbines (Advances in Manufacturing).” Advances in Manufacturing 2: 79-87.

38. Z. Zhang, Muyeen, S.M.; Al-Durra, A.; Nilssen, R.; Nysveen, A.; “Multiphysicsmodelling of ironless permanent

magnet generators.” Energy Procedia.

39. Zwick, D. and M. Muskulus (2014). “The simulation error caused by input loading variability in offshore

wind turbine structural analysis.” Wind Energy.

40. Rasheed, A.; Kvamsdal, T.; MultiscaleWind Modeling. Book title: Parallel CFD 2014, parallel Computational

Fluid Dynamics. ISBN: 978-84-941686-6-6

Published Conference papers

1.

Anaya-Lara, O., et al. (2014). Developments and Opportunities in HVDC Offshore Grids Research, EWEC,

2014; Barcelona; March, 10 -13.

2.

Eivind Fonn, Rasheed, A.; Kvarving, A.M.; Kvamsdal, T.; (2014). Spline based mesh generator for wind

turbine blades, Stockholm; 25th Nordic Seminar on Computational Mechanics

3.

Jos e Azcona, Bouchotrouch, F.; Gonzalez, M.; Barcianda, J.; Munduate, X.; Kelberlau, F.; Nygaard, T.A.;

(2014). Aerodynamic Thrust Modelling in Wave Tank Tests of O shore Floating Wind Turbines Using a

Ducted Fan; Torque, IOP, Journal of Physics; Conference Series 524; The Science of Making Torque from

Wind; Copenhagen; 17 June 2014

4.

Matveev, A., et al. (2014). Permanent magnet generator with three stators for renewable energy convert-

ers; INTERMAG 2014; Dresden; Germany

5.

Moan, T. (2014). Stochastic Dynamic Response Analysis of Offshore Wind Turbines in a Reliability

Perspective. Keynote Prof Torgeir Moan; EURODYN 2014; Porto; Portugal; 30 June – 2 July 2014

6.

Mugica, M. S., et al. (2014). Grid integration and power quality testing of Marine Energy Converters:

Research Activities in the MARINET project; Ninth International Conference on Ecological Vehicles and

Renewable Energies (EVER) 2014; Monaco; 25 - 27 March

7.

Nicolai, F., et al. (2014). Effects of increased voltage in distribution grids; Nordac 2014; Stockholm; 8. Sep

2014