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Iterative solver approach for turbine interactions: application to wind or marine current turbine farms

Authors :
Corentin Lothodé
Alexandre Dezotti
Clément Carlier
Grégory Pinon
Paul Mycek
Laboratoire Ondes et Milieux Complexes (LOMC)
Université Le Havre Normandie (ULH)
Normandie Université (NU)-Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)
Laboratoire de Mathématiques Raphaël Salem (LMRS)
Université de Rouen Normandie (UNIROUEN)
Institut de Mathématiques de Toulouse UMR5219 (IMT)
Université Toulouse Capitole (UT Capitole)
Université de Toulouse (UT)-Université de Toulouse (UT)-Institut National des Sciences Appliquées - Toulouse (INSA Toulouse)
Institut National des Sciences Appliquées (INSA)-Université de Toulouse (UT)-Institut National des Sciences Appliquées (INSA)-Université Toulouse - Jean Jaurès (UT2J)
Université de Toulouse (UT)-Université Toulouse III - Paul Sabatier (UT3)
Université de Toulouse (UT)-Centre National de la Recherche Scientifique (CNRS)
Code DOROTHY - Lagrangian Vortex simulation
Collaboration LOMC - Univ. Le Havre - IFREMER
Centre National de la Recherche Scientifique (CNRS)-Université Le Havre Normandie (ULH)
Normandie Université (NU)-Normandie Université (NU)
Institut National des Sciences Appliquées - Toulouse (INSA Toulouse)
Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-Université Toulouse 1 Capitole (UT1)
Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Université Toulouse - Jean Jaurès (UT2J)-Université Toulouse III - Paul Sabatier (UT3)
Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)
Source :
Applied Mathematical Modelling, Applied Mathematical Modelling, 2017, 41, pp.331-349. ⟨10.1016/j.apm.2016.08.027⟩, Applied Mathematical Modelling (0307-904X) (Elsevier Science Inc), 2017-01, Vol. 41, P. 331-349, Applied Mathematical Modelling, Elsevier, 2017, 41, pp.331-349. ⟨10.1016/j.apm.2016.08.027⟩
Publication Year :
2017
Publisher :
HAL CCSD, 2017.

Abstract

This paper presents a numerical investigation for the computation of wind or marine current turbines in a farm. A 3D unsteady Lagrangian vortex method is used together with a panel method in order to take into account for the turbines. In order to enforce the boundary condition onto the panel elements, a linear matrix system is defined. Solving general linear matrix systems is a topic with important scientific literature. But the main concern here is the application to a dedicated matrix which is non-sparse, non-symmetric, neither diagonally dominant nor positive-definite. Several iterative approaches were tested and compared. But after some numerical tests, a Bi-CGSTAB method was finally chosen. The main advantage of the presented method is the use of a specific preconditioner well suited for the desired application. The chosen implementation proved to be very efficient with only 3 iterations of our preconditioned Bi-CGSTAB algorithm whatever the turbine geometrical configuration. Although developed for wind or marine turbines, the proposed algorithm is absolutely not restricted to these cases, and can be applied to many others. At the end of the paper, some applications (specifically, wake computations) in a farm are presented, along with a quantitative assessment of the computational time savings brought by the iterative approach.

Details

Language :
English
ISSN :
0307904X
Database :
OpenAIRE
Journal :
Applied Mathematical Modelling, Applied Mathematical Modelling, 2017, 41, pp.331-349. ⟨10.1016/j.apm.2016.08.027⟩, Applied Mathematical Modelling (0307-904X) (Elsevier Science Inc), 2017-01, Vol. 41, P. 331-349, Applied Mathematical Modelling, Elsevier, 2017, 41, pp.331-349. ⟨10.1016/j.apm.2016.08.027⟩
Accession number :
edsair.doi.dedup.....5e35f10c0b68d2954f438983e4368fcb