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Featured researches published by Staffan Lundin.


Journal of Renewable and Sustainable Energy | 2016

Experimental demonstration of performance of a vertical axis marine current turbine in a river

Staffan Lundin; Johan Forslund; Anders Goude; Mårten Grabbe; Katarina Yuen; Mats Leijon

An experimental station for marine current power has been installed in a river. The station comprises a vertical axis turbine with a direct-driven permanent magnet synchronous generator. In measure ...


Volume 4: Ocean Engineering; Ocean Renewable Energy; Ocean Space Utilization, Parts A and B | 2009

A Design Study of Marine Current Turbine-Generator Combinations

Staffan Lundin; Mårten Grabbe; Katarina Yuen; Mats Leijon

Marine currents are an offshore source of renewable energy of increasing importance, with the development of technology for electricity generation from tidal currents or low-head river currents advancing at a quick pace. Two of the major components of a marine current power plant are the generator and the turbine. It is not sufficient to design these components separately, but a system approach, where the power plant is seen as one entity, must be taken to achieve best overall efficiency. In the present paper, the performance of three different combinations of direct-driven permanent magnet generator with cross-stream axis marine current turbine is examined numerically under the variation of water flow speed. The design case chosen is that of a shallow river or tidal channel, where the cross-sectional area limits the physical size of the power plant. The units are designed for a power output of 10 kW at a water current velocity of 1 m/s. Turbines for three different rotational speeds are considered, each in combination with a corresponding generator. The three turbine-generator systems are designed according to similar design criteria to allow for comparisons. The turbines are modelled using an in-house code, based on the double multiple streamtube model. Corrections are made due to the finite aspect ratio and tip losses of the blades. Experimental data for the lift and drag coefficients for different Reynolds numbers are used in the model. The generators are modelled using a FEM tool that has been validated with experimental results. The three generators are designed for the same nominal voltage and with a low load angle to allow for overload operation. The overall performance of each of the three systems is studied under varying flow velocity. The main conclusion is that all three machines exhibit essentially the same performance behaviour, which means that the choice of nominal operational speed for a power plant will not be a major design constraint. Turbines with higher rotational speed allow for a more compact generator design within the limits of the design parameters used in this study. However, this also entails certain mechanical constraints on the turbine. Due to the restricted cross-sectional area in the channel, it is clear that at least one of the three systems would have to be placed with the axis of rotation in a horizontal rather than vertical position.Copyright


Renewable & Sustainable Energy Reviews | 2009

A review of the tidal current energy resource in Norway

Mårten Grabbe; Emilia Lalander; Staffan Lundin; Mats Leijon


EWTEC09, | 2009

A parameter study of the influence of struts on the performance of a vertical-axis marine current turbine.

Anders Goude; Staffan Lundin; Mats Leijon


9th European Wave and Tidal Energy Conference, Southampton, UK, 5-9 September 2011 | 2011

The Söderfors Project : Construction of an Experimental Hydrokinetic Power Station

Katarina Yuen; Staffan Lundin; Mårten Grabbe; Emilia Lalander; Anders Goude; Mats Leijon


10th European Wave and Tidal Energy Conference (EWTEC), 2-5 september, 2013, Aalborg, Denmark | 2013

The Söderfors Project : Experimental Hydrokinetic Power Station Deployment and First Results

Staffan Lundin; Johan Forslund; Nicole Carpman; Mårten Grabbe; Katarina Yuen; Senad Apelfröjd; Anders Goude; Mats Leijon


International Journal of Marine Energy | 2017

Forces on a marine current turbine during runaway

Anders Goude; Staffan Lundin


Energies | 2016

One-Dimensional Modelling of Marine Current Turbine Runaway Behaviour

Staffan Lundin; Anders Goude; Mats Leijon


Energies | 2015

Experimental Results of a DC Bus Voltage Level Control for a Load-Controlled Marine Current Energy Converter

Johan Forslund; Staffan Lundin; Karin Thomas; Mats Leijon


11th European Wave and Tidal Energy Conference, EWTEC15, 6-11 September 2015, Nantes, France | 2015

Studying the Wake of a Marine Current Turbine Using an Acoustic Doppler Current Profiler

Staffan Lundin; Nicole Carpman; Karin Thomas; Mats Leijon

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