Development of wake meandering detection algorithms and their application to large eddy simulations of an isolated wind turbine and a wind farm
We investigate several algorithms to detect the centerline of a wind turbine wake. First, we apply these methods during Large Eddy Simulations of an isolated wind turbine subject to a uniform (TI = 0%) and a synthetic turbulent inflow (TI = 10%). The simulations are performed using a vortex-particle...
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Published in | Journal of physics. Conference series Vol. 1037; no. 7; pp. 72024 - 72033 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Bristol
IOP Publishing
01.06.2018
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ISSN | 1742-6588 1742-6596 |
DOI | 10.1088/1742-6596/1037/7/072024 |
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Abstract | We investigate several algorithms to detect the centerline of a wind turbine wake. First, we apply these methods during Large Eddy Simulations of an isolated wind turbine subject to a uniform (TI = 0%) and a synthetic turbulent inflow (TI = 10%). The simulations are performed using a vortex-particle mesh method with the blades modeled using immersed lifting lines. The most robust algorithm is then applied to investigate the wakes positions inside a wind farm. At wind farm scale, the simulations are performed with a fourth-order finite difference code inside which the wind turbines are accounted for through advanced actuator disks. |
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AbstractList | We investigate several algorithms to detect the centerline of a wind turbine wake. First, we apply these methods during Large Eddy Simulations of an isolated wind turbine subject to a uniform (TI = 0%) and a synthetic turbulent inflow (TI = 10%). The simulations are performed using a vortex-particle mesh method with the blades modeled using immersed lifting lines. The most robust algorithm is then applied to investigate the wakes positions inside a wind farm. At wind farm scale, the simulations are performed with a fourth-order finite difference code inside which the wind turbines are accounted for through advanced actuator disks. |
Author | Chatelain, P Coudou, N Moens, M Van Beeck, J Marichal, Y Bricteux, L |
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Cites_doi | 10.1002/we.402 10.1088/1742-6596/753/3/032053 10.1016/S0266-8920(97)00036-2 10.1063/1.4955091 10.1017/CBO9780511840531 10.1016/j.ijheatmasstransfer.2014.03.080 10.5194/wes-1-129-2016 10.1088/1742-6596/854/1/012030 |
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References | Aubrun S (2) 2012 11 12 Moens M (8) 2016; 753 14 Backaert S (7) 2015; 18 Marichal Y (17) 2017; 854 Chatelain P (5) 2008; 197 Moens M (13) Winckelmans G ed Stein E (9) 2004; 3 Jeanmart H (10) 2007; 19 1 Jonkman J (15) 2009 3 4 Chatelain P (6) 2013; 91 Kooijman H J T (16) 2003 |
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Snippet | We investigate several algorithms to detect the centerline of a wind turbine wake. First, we apply these methods during Large Eddy Simulations of an isolated... |
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SubjectTerms | Actuator disks Algorithms Finite difference method Finite element method Large eddy simulation Physics Simulation Vortices Wakes Wind farms Wind power Wind turbines |
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Title | Development of wake meandering detection algorithms and their application to large eddy simulations of an isolated wind turbine and a wind farm |
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