Wind turbine drivetrains: state-of-the-art technologies and future development trends

Author:

Nejad Amir R.ORCID,Keller JonathanORCID,Guo Yi,Sheng Shawn,Polinder Henk,Watson SimonORCID,Dong Jianning,Qin Zian,Ebrahimi Amir,Schelenz RalfORCID,Guzmán Francisco GutiérrezORCID,Cornel Daniel,Golafshan Reza,Jacobs GeorgORCID,Blockmans Bart,Bosmans Jelle,Pluymers Bert,Carroll James,Koukoura Sofia,Hart EdwardORCID,McDonald Alasdair,Natarajan Anand,Torsvik Jone,Moghadam Farid K.,Daems Pieter-Jan,Verstraeten Timothy,Peeters Cédric,Helsen Jan

Abstract

Abstract. This paper presents the state-of-the-art technologies and development trends of wind turbine drivetrains – the energy conversion systems transferring the kinetic energy of the wind to electrical energy – in different stages of their life cycle: design, manufacturing, installation, operation, lifetime extension, decommissioning, and recycling. Offshore development and digitalization are also a focal point in this study. The main aim of this article is to review the drivetrain technology development as well as to identify future challenges and research gaps. Drivetrain in this context includes the whole power conversion system: main bearing, shafts, gearbox, generator, and power converter. The paper discusses current design technologies for each component along with advantages and disadvantages. The discussion of the operation phase highlights the condition monitoring methods currently employed by the industry as well as emerging areas. This article also illustrates the multidisciplinary aspect of wind turbine drivetrains, which emphasizes the need for more interdisciplinary research and collaboration.

Funder

U.S. Department of Energy

Royal Commission for the Exhibition of 1851

Fonds Wetenschappelijk Onderzoek

Publisher

Copernicus GmbH

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