English

Hardware-in-the-loop wind-tunnel testing of wake interactions between two floating wind turbines

Systems and Control 2026-01-13 v1 Systems and Control

Abstract

Wake interactions in floating wind farms are inherently coupled to platform motion, yet most experimental studies to date neglect this two-way coupling by prescribing platform movements. This work presents a hardware-in-the-loop (HIL) wind-tunnel methodology to investigate wake interactions between two floating wind turbines with fully coupled aerodynamic loading and platform dynamics. The approach integrates physical wind-tunnel testing of two scaled rotors with a real-time numerical model that accounts for platform motion, mooring restoring forces, and hydrodynamic loads. Experiments conducted under low-turbulence inflow conditions show that a downstream turbine operating in the wake of an upstream turbine experiences reduced mean thrust and platform deflections due to the decreased inflow velocity, alongside enhanced low-frequency platform motions driven by increased turbulent energy in the wake. The proposed HIL framework provides a controlled experimental basis for studying wake-induced excitation mechanisms and supports the validation of floating wind farm models and control strategies.

Keywords

Cite

@article{arxiv.2601.06964,
  title  = {Hardware-in-the-loop wind-tunnel testing of wake interactions between two floating wind turbines},
  author = {Alessandro Fontanella and Kristjan Milic and Alan Facchinetti and Sara Muggiasca and Marco Belloli},
  journal= {arXiv preprint arXiv:2601.06964},
  year   = {2026}
}
R2 v1 2026-07-01T08:59:40.088Z