A fast-running physics-based wake model for a semi-infinite wind farm

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Bastankhah, Majid, Mohammadi, Mohammad Mehdi, Lees, Charlie, Diaz, Gonzalo Pablo Navarro, Buxton, Oliver, Ivanell, Stefan
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914775888297984
author Bastankhah, Majid
Mohammadi, Mohammad Mehdi
Lees, Charlie
Diaz, Gonzalo Pablo Navarro
Buxton, Oliver
Ivanell, Stefan
author_facet Bastankhah, Majid
Mohammadi, Mohammad Mehdi
Lees, Charlie
Diaz, Gonzalo Pablo Navarro
Buxton, Oliver
Ivanell, Stefan
contents This paper presents a new generation of fast-running physics-based models to predict the wake of a semi-infinite wind farm, extending infinitely in the lateral direction but with finite size in the streamwise direction. The assumption of a semi-infinite wind farm enables concurrent solving of the laterally-averaged momentum equations in both streamwise and spanwise directions. The developed model captures important physical phenomena such as vertical top-down transport of energy into the farm, variable wake recovery rate due to the farm-generated turbulence, and also wake deflection due to turbine yaw misalignment and Coriolis force. Of special note is the model's capability to predict and shed light on the counteracting effect of Coriolis force causing wake deflections in both positive and negative directions. Moreover, the impact of wind-farm layout configuration on the flow distribution is modelled through a parameter called the local deficit coefficient. Model predictions were validated against large-eddy simulations extending up to 45 kilometres downstream of wind farms. Detailed analyses were performed to study the impacts of various factors such as incoming turbulence, wind-farm size, inter-turbine spacing, and wind-farm layout on the farm wake.
format Preprint
id arxiv_https___arxiv_org_abs_2309_08711
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A fast-running physics-based wake model for a semi-infinite wind farm
Bastankhah, Majid
Mohammadi, Mohammad Mehdi
Lees, Charlie
Diaz, Gonzalo Pablo Navarro
Buxton, Oliver
Ivanell, Stefan
Fluid Dynamics
This paper presents a new generation of fast-running physics-based models to predict the wake of a semi-infinite wind farm, extending infinitely in the lateral direction but with finite size in the streamwise direction. The assumption of a semi-infinite wind farm enables concurrent solving of the laterally-averaged momentum equations in both streamwise and spanwise directions. The developed model captures important physical phenomena such as vertical top-down transport of energy into the farm, variable wake recovery rate due to the farm-generated turbulence, and also wake deflection due to turbine yaw misalignment and Coriolis force. Of special note is the model's capability to predict and shed light on the counteracting effect of Coriolis force causing wake deflections in both positive and negative directions. Moreover, the impact of wind-farm layout configuration on the flow distribution is modelled through a parameter called the local deficit coefficient. Model predictions were validated against large-eddy simulations extending up to 45 kilometres downstream of wind farms. Detailed analyses were performed to study the impacts of various factors such as incoming turbulence, wind-farm size, inter-turbine spacing, and wind-farm layout on the farm wake.
title A fast-running physics-based wake model for a semi-infinite wind farm
topic Fluid Dynamics
url https://arxiv.org/abs/2309.08711