Piloted Simulation of the Rotorcraft Wind Turbine Wake Interaction during Hover and Transit Flights

Author:

Štrbac AlexanderORCID,Greiwe Daniel HeinrichORCID,Hoffmann Frauke,Cormier Marion,Lutz Thorsten

Abstract

Helicopters are used for offshore wind farms for maintenance and support flights. The number of helicopter operations is increasing with the expansion of offshore wind energy, which stresses the point that the current German regulations have not yet been validated through scientific analysis. A collaborative research project between DLR, the Technical University of Munich, the University of Stuttgart and the University of Tübingen has been conducted to examine the sizes of the flight corridors on offshore wind farms and the lateral safety clearance for helicopter hoist operations at offshore wind turbines. This paper details the results of piloted helicopter simulations in a realistic offshore wind farm scenario. The far-wake of rotating wind turbines and the near-wake of non-rotating wind turbines have been simulated with high-fidelity computational fluid dynamics under realistic turbulent inflow conditions. The resulting flow fields have been processed by superposition during piloted simulations in the research flight simulator AVES to examine the flight corridors in transit flights and the lateral safety clearance in hovering flights. The results suggest a sufficient size for the flight corridor and sufficient lateral safety clearance at the offshore wind turbines in the considered scenarios.

Funder

Federal Ministry for Economic Affairs and Energy

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference47 articles.

1. First identification and quantification of detached-tip vortices behind a wind energy converter using fixed-wing unmanned aircraft system

2. Actuator Line Method Simulations for the Analysis of Wind Turbine Wakes Acting on Helicopters

3. CFD Prediction of Tip Vortex Aging in the Wake of a Multi-MW Wind Turbine

4. Numerical Investigation of the Unsteady Flow Field Past an Offshore Wind Turbine in Maintenance Operations;Cormier,2020

5. CFD Study of an Offshore Wind Turbine in Maintenance Conditions;Cormier,2021

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