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Wind speed and direction predictions by WRF and WindSim coupling over Nygårdsfjell

Permanent link
https://hdl.handle.net/10037/10127
DOI
https://doi.org/10.1088/1742-6596/753/8/082018
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Date
2016
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Bilal, Muhammad; Birkelund, Yngve; Solbakken, Kine
Abstract
In this study, the performance of the mesoscale meteorological Weather Research and Forecast (WRF) model coupled with the microscale computational fluid dynamics based model WindSim is investigated and compared to the performance of WRF alone. The two model set-ups, WRF and WRF-WindSim, have been tested on three high-wind events in February, June and October, over a complex terrain at the Nyg˚ardsfjell wind park in Norway. The wind speeds and wind directions are compared to measurements and the results are evaluated based on root mean square error, bias and standard deviation error. Both model set-ups are able to reproduce the high wind events. For the winter month February the WRF-WindSim performed better than WRF alone, with the root mean square error (RMSE) decreasing from 2.86 to 2.38 and standard deviation error (STDE) decreasing from 2.69 to 2.37. For the two other months no such improvements were found. The best model performance was found in October where the WRF had a RMSE of 1.76 and STDE of 1.68. For June, both model set-ups underestimate the wind speed. Overall, the adopted coupling method of using WRF outputs as virtual climatology for coupling WRF and WindSim did not offer a significant improvement over the complex terrain of Nyg˚ardsfjell. However, the proposed coupling method offers high degree of simplicity when it comes to its application. Further testing is recommended over larger number of test cases to make a significant conclusion.
Publisher
IOP Publishing
Citation
Journal of Physics, Conference Series 2016, 753
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