Experimental Investigation on the Wake Characteristics and Aeromechanics of Dual-Rotor Wind Turbines

Author:

Ozbay Ahmet1,Tian Wei2,Hu Hui2

Affiliation:

1. Department of Aerospace Engineering, Iowa State University, 2271 Howe Hall, Room 1200, Ames, IA 50011-2271

2. Department of Aerospace Engineering, Iowa State University, 2271 Howe Hall, Room 1200, Ames, IA 50011-2271 e-mail:

Abstract

An experimental study was carried out to investigate the aeromechanics and wake characteristics of dual-rotor wind turbines (DRWTs) in either co-rotating or counter-rotating configuration, in comparison to those of a conventional single-rotor wind turbine (SRWT). The experiments were performed in a large-scale aerodynamic/atmospheric boundary layer (AABL) wind tunnel, available at Iowa State University with the oncoming atmospheric boundary-layer (ABL) airflows under neutral stability conditions. In addition to measuring the power output performance of DRWT and SRWT models, static and dynamic wind loads acting on those turbine models were also investigated. Furthermore, a high-resolution digital particle image velocimetry (PIV) system was used to quantify the flow characteristics in the near wakes of the DRWT and SRWT models. The detailed wake-flow measurements were correlated with the power outputs and wind-load measurement results of the wind-turbine models to elucidate the underlying physics to explore/optimize design of wind turbines for higher power yield and better durability.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference25 articles.

1. Schraubenpropeller mit Geringstem Energieverlust (Ship Propellers with Minimum Loss of Energy),1919

2. Refined Betz Limit for Rotors With a Finite Number of Blades;Wind Energy,2008

3. Aerodynamic Efficiency Entitlement Study of a Horizontal Axis Wind Turbine,2009

4. A Novel Dual-Rotor Turbine for Increased Wind Energy Capture;J. Phys.: Conf. Ser.,2014

5. Multiple Actuator-Disk Theory for Wind Turbines;J. Wind Eng. Ind. Aerodyn,1986

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