Analytical modelling of wind-turbine wake turbulence in neutral atmospheric boundary layers

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Main Authors: Blondel, Frédéric, Jézéquel, Erwan, Schottenhamml, Helen, Bastankhah, Majid
Format: Preprint
Published: 2025
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_version_ 1866911634030592000
author Blondel, Frédéric
Jézéquel, Erwan
Schottenhamml, Helen
Bastankhah, Majid
author_facet Blondel, Frédéric
Jézéquel, Erwan
Schottenhamml, Helen
Bastankhah, Majid
contents So-called engineering or analytical wind farm flow solvers typically build upon two submodels: one for the velocity deficit and one for the wake-added turbulence intensity. While velocity deficit modelling has received considerable attention, wake-added turbulence models are less prevalent in comparison. Yet, accurate estimates of local turbulence intensity are essential for predicting flow interactions and energy yield, as turbine wakes are both sensitive to, and sources of turbulence. Existing wake-added turbulence models are typically empirical or assume axial symmetry despite the inherently three-dimensional nature of turbulent wake fields. In this work, we present a new model for wake-added turbulence intensity. Our approach is based on the analysis of the TKE and the streamwise Reynolds stress budget, incorporating classical RANS modelling assumptions and far-wake approximations. The resulting model maintains a simple and practical form, demonstrating strong agreement with LES and wind tunnel measurements. Our model provides a more physically consistent and predictive tool for wind farm flow modelling and performance estimation.
format Preprint
id arxiv_https___arxiv_org_abs_2508_20012
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analytical modelling of wind-turbine wake turbulence in neutral atmospheric boundary layers
Blondel, Frédéric
Jézéquel, Erwan
Schottenhamml, Helen
Bastankhah, Majid
Fluid Dynamics
So-called engineering or analytical wind farm flow solvers typically build upon two submodels: one for the velocity deficit and one for the wake-added turbulence intensity. While velocity deficit modelling has received considerable attention, wake-added turbulence models are less prevalent in comparison. Yet, accurate estimates of local turbulence intensity are essential for predicting flow interactions and energy yield, as turbine wakes are both sensitive to, and sources of turbulence. Existing wake-added turbulence models are typically empirical or assume axial symmetry despite the inherently three-dimensional nature of turbulent wake fields. In this work, we present a new model for wake-added turbulence intensity. Our approach is based on the analysis of the TKE and the streamwise Reynolds stress budget, incorporating classical RANS modelling assumptions and far-wake approximations. The resulting model maintains a simple and practical form, demonstrating strong agreement with LES and wind tunnel measurements. Our model provides a more physically consistent and predictive tool for wind farm flow modelling and performance estimation.
title Analytical modelling of wind-turbine wake turbulence in neutral atmospheric boundary layers
topic Fluid Dynamics
url https://arxiv.org/abs/2508.20012