A vortex-based tip/smearing correction for the actuator line

<p>The actuator line (AL) was intended as a lifting line (LL) technique for computational fluid dynamics (CFD) applications. In this paper we prove – theoretically and practically – that smearing the forces of the actuator line in the flow domain forms a viscous core in the bound and shed vort...

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Main Authors: A. R. Meyer Forsting, G. R. Pirrung, N. Ramos-García
Format: Article
Language:English
Published: Copernicus Publications 2019-06-01
Series:Wind Energy Science
Online Access:https://www.wind-energ-sci.net/4/369/2019/wes-4-369-2019.pdf
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spelling doaj-bf840079f71b4c50a426d5a8d9f4c9622020-11-25T01:16:17ZengCopernicus PublicationsWind Energy Science2366-74432366-74512019-06-01436938310.5194/wes-4-369-2019A vortex-based tip/smearing correction for the actuator lineA. R. Meyer ForstingG. R. PirrungN. Ramos-García<p>The actuator line (AL) was intended as a lifting line (LL) technique for computational fluid dynamics (CFD) applications. In this paper we prove – theoretically and practically – that smearing the forces of the actuator line in the flow domain forms a viscous core in the bound and shed vorticity of the line. By combining a near-wake representation of the trailed vorticity with a viscous vortex core model, the missing induction from the smeared velocity is recovered. This novel dynamic smearing correction is verified for basic wing test cases and rotor simulations of a multimegawatt turbine. The latter cover the entire operational wind speed range as well as yaw, strong turbulence and pitch step cases. The correction is validated with lifting line simulations with and without viscous core, which are representative of an actuator line without and with smearing correction, respectively. The dynamic smearing correction makes the actuator line effectively act as a lifting line, as it was originally intended.</p>https://www.wind-energ-sci.net/4/369/2019/wes-4-369-2019.pdf
collection DOAJ
language English
format Article
sources DOAJ
author A. R. Meyer Forsting
G. R. Pirrung
N. Ramos-García
spellingShingle A. R. Meyer Forsting
G. R. Pirrung
N. Ramos-García
A vortex-based tip/smearing correction for the actuator line
Wind Energy Science
author_facet A. R. Meyer Forsting
G. R. Pirrung
N. Ramos-García
author_sort A. R. Meyer Forsting
title A vortex-based tip/smearing correction for the actuator line
title_short A vortex-based tip/smearing correction for the actuator line
title_full A vortex-based tip/smearing correction for the actuator line
title_fullStr A vortex-based tip/smearing correction for the actuator line
title_full_unstemmed A vortex-based tip/smearing correction for the actuator line
title_sort vortex-based tip/smearing correction for the actuator line
publisher Copernicus Publications
series Wind Energy Science
issn 2366-7443
2366-7451
publishDate 2019-06-01
description <p>The actuator line (AL) was intended as a lifting line (LL) technique for computational fluid dynamics (CFD) applications. In this paper we prove – theoretically and practically – that smearing the forces of the actuator line in the flow domain forms a viscous core in the bound and shed vorticity of the line. By combining a near-wake representation of the trailed vorticity with a viscous vortex core model, the missing induction from the smeared velocity is recovered. This novel dynamic smearing correction is verified for basic wing test cases and rotor simulations of a multimegawatt turbine. The latter cover the entire operational wind speed range as well as yaw, strong turbulence and pitch step cases. The correction is validated with lifting line simulations with and without viscous core, which are representative of an actuator line without and with smearing correction, respectively. The dynamic smearing correction makes the actuator line effectively act as a lifting line, as it was originally intended.</p>
url https://www.wind-energ-sci.net/4/369/2019/wes-4-369-2019.pdf
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