Wildmann, Norman und Gerz, Thomas und Lundquist, Julie K. (2020) Long-range Doppler lidar measurements of wind turbine wakes and their interaction with turbulent atmospheric boundary-layer flow at Perdigao 2017. In: Journal of Physics: Conference Series, 1618 (3). Institute of Physics (IOP) Publishing. The Science of Making Torque from Wind (TORQUE 2020), 2020-09-28 - 2020-10-02, Online, Everywhere. doi: 10.1088/1742-6596/1618/3/032034. ISSN 1742-6588.
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Offizielle URL: https://dx.doi.org/10.1088/1742-6596/1618/3/032034
Kurzfassung
As part of the Perdigão 2017 campaign, vertical RHI (range-height indicator) scans with long-range pulsed Doppler wind lidars were performed aligned with the main wind direction and a wind turbine (WT) located on a mountain ridge. The measurements are used to not only retrieve flow velocities, but also their variance and - by using the turbulent broadening of the Doppler spectrum - also turbulent kinetic energy (TKE) dissipation rate. The study shows that turbulence in the WT wake is dependent on the turbulence of the inflow, but also on atmospheric stability. In stable atmospheric conditions, wakes could be analyzed up to five rotor diameters downstream (D) and showed the maximum turbulence in the wake at 2-3 D, whereas in unstable conditions, the maximum was found at 2 D and the wake could not be detected further than 3 D. A clear dependency of wake turbulence enhancement on inflow turbulence intensity is found, which levels out to no further enhancement at turbulence intensities of 30%
| elib-URL des Eintrags: | https://elib.dlr.de/223063/ | ||||||||||||||||
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| Dokumentart: | Konferenzbeitrag (Vortrag) | ||||||||||||||||
| Titel: | Long-range Doppler lidar measurements of wind turbine wakes and their interaction with turbulent atmospheric boundary-layer flow at Perdigao 2017 | ||||||||||||||||
| Autoren: |
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| Datum: | 2020 | ||||||||||||||||
| Erschienen in: | Journal of Physics: Conference Series | ||||||||||||||||
| Referierte Publikation: | Nein | ||||||||||||||||
| Open Access: | Nein | ||||||||||||||||
| Gold Open Access: | Nein | ||||||||||||||||
| In SCOPUS: | Ja | ||||||||||||||||
| In ISI Web of Science: | Nein | ||||||||||||||||
| Band: | 1618 | ||||||||||||||||
| DOI: | 10.1088/1742-6596/1618/3/032034 | ||||||||||||||||
| Verlag: | Institute of Physics (IOP) Publishing | ||||||||||||||||
| Name der Reihe: | Journal of Physics: Conference Series | ||||||||||||||||
| ISSN: | 1742-6588 | ||||||||||||||||
| Status: | veröffentlicht | ||||||||||||||||
| Stichwörter: | Wind energy, wind turbine wakes, atmospheric stability, lidar | ||||||||||||||||
| Veranstaltungstitel: | The Science of Making Torque from Wind (TORQUE 2020) | ||||||||||||||||
| Veranstaltungsort: | Online, Everywhere | ||||||||||||||||
| Veranstaltungsart: | internationale Konferenz | ||||||||||||||||
| Veranstaltungsbeginn: | 28 September 2020 | ||||||||||||||||
| Veranstaltungsende: | 2 Oktober 2020 | ||||||||||||||||
| HGF - Forschungsbereich: | Energie | ||||||||||||||||
| HGF - Programm: | Materialien und Technologien für die Energiewende | ||||||||||||||||
| HGF - Programmthema: | Photovoltaik und Windenergie | ||||||||||||||||
| DLR - Schwerpunkt: | Energie | ||||||||||||||||
| DLR - Forschungsgebiet: | E SW - Solar- und Windenergie | ||||||||||||||||
| DLR - Teilgebiet (Projekt, Vorhaben): | E - Windenergie | ||||||||||||||||
| Standort: | Oberpfaffenhofen | ||||||||||||||||
| Institute & Einrichtungen: | Institut für Physik der Atmosphäre > Angewandte Meteorologie | ||||||||||||||||
| Hinterlegt von: | Bastin, Melanie | ||||||||||||||||
| Hinterlegt am: | 30 Jul 2026 10:33 | ||||||||||||||||
| Letzte Änderung: | 30 Jul 2026 10:33 |
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