Articles | Volume 10, issue 8
https://doi.org/10.5194/wes-10-1611-2025
https://doi.org/10.5194/wes-10-1611-2025
Research article
 | 
08 Aug 2025
Research article |  | 08 Aug 2025

Offshore wind farm layout optimization with alignment constraints

Paul Malisani, Tristan Bartement, and Pauline Bozonnet

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Cited articles

Baker, N. F., Thomas, J. J., Stanley, A. P. J., and Ning, A.: EA Task 37 Wind Farm Layout Optimization Case Studies, Zenodo [data set] and [code], https://doi.org/10.5281/zenodo.5809681, 2021. a, b, c
Bastankhah, M. and Porté-Agel, F.: Experimental and theoretical study of wind turbine wakes in yawed conditions, J. Fluid Mech., 806, 506–541, https://doi.org/10.1017/jfm.2016.595, 2016. a
Bortolotti, P., Tarres, H. C., Dykes, K. L., Merz, K., Sethuraman, L., Verelst, D., and Zahle, F.: IEA Wind TCP Task 37: Systems Engineering in Wind Energy – WP2.1 Reference Wind Turbines, Tech. rep., https://doi.org/10.2172/1529216, 2019. a
Burer, S. and Letchford, A.: Non-convex mixed-integer nonlinear programming: A survey, Surveys in Operations Research and Management Science, 17, 97–106, 2012. a
Exler, O., Antelo, L., Egea, J., Alonso, A., and Banga, J.: A tabu search-based algorithm for mixed-integer nonlinear problems and its application to integrated process and control system design, Computers and Chemical Engineering, 32, 1877–1891, 2008. a
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Maritime authorities often impose turbine alignment constraints on developers to secure the navigation of boats within the wind farm, potentially creating substantial wake losses. The proposed contribution is a new wind farm layout optimization (WFLO) algorithm that considers these constraints. The proposed method optimizes the grid-alignment parameters and the turbines' location on this grid. We illustrate the algorithm's performances on a challenging example.
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