LAPSE:2018.1007v1
Published Article
LAPSE:2018.1007v1
One-Dimensional Modelling of Marine Current Turbine Runaway Behaviour
Staffan Lundin, Anders Goude, Mats Leijon
November 27, 2018
Abstract
If a turbine loses its electrical load, it will rotate freely and increase speed, eventually achieving that rotational speed which produces zero net torque. This is known as a runaway situation. Unlike many other types of turbine, a marine current turbine will typically overshoot the final runaway speed before slowing down and settling at the runaway speed. Since the hydrodynamic forces acting on the turbine are dependent on rotational speed and acceleration, turbine behaviour during runaway becomes important for load analyses during turbine design. In this article, we consider analytical and numerical models of marine current turbine runaway behaviour in one dimension. The analytical model is found not to capture the overshoot phenomenon, while still providing useful estimates of acceleration at the onset of runaway. The numerical model incorporates turbine wake build-up and predicts a rotational speed overshoot. The predictions of the models are compared against measurements of runaway of a marine current turbine. The models are also used to recreate previously-published results for a tidal turbine and applied to a wind turbine. It is found that both models provide reasonable estimates of maximum accelerations. The numerical model is found to capture the speed overshoot well.
Keywords
marine current turbines, runaway speed, tidal turbines
Suggested Citation
Lundin S, Goude A, Leijon M. One-Dimensional Modelling of Marine Current Turbine Runaway Behaviour. (2018). LAPSE:2018.1007v1
Author Affiliations
Lundin S: Division of Electricity, Department of Engineering Sciences, Uppsala University, P.O. Box 534, SE-751 21 Uppsala, Sweden
Goude A: Division of Electricity, Department of Engineering Sciences, Uppsala University, P.O. Box 534, SE-751 21 Uppsala, Sweden
Leijon M: Division of Electricity, Department of Engineering Sciences, Uppsala University, P.O. Box 534, SE-751 21 Uppsala, Sweden
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Journal Name
Energies
Volume
9
Issue
5
Article Number
E309
Year
2016
Publication Date
2016-04-25
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en9050309, Publication Type: Journal Article
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LAPSE:2018.1007v1
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https://doi.org/10.3390/en9050309
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Nov 27, 2018
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CC BY 4.0
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[v1] (Original Submission)
Nov 27, 2018
 
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Nov 27, 2018
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Record Owner
Calvin Tsay
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