Dynamic Response Analysis of Wind Turbine Gearbox Using Simplified Local Tooth Stiffness of Internal Gear System

Author:

Cho J. R.12,Jeong K. Y.1,Park M. H.1,Park N. G.1

Affiliation:

1. School of Mechanical Engineering, Pusan National University, Busan 609-735, Korea

2. Research and Development Institute of Midas IT, Gyeonggi 463-400, Korea e-mail:

Abstract

This paper presents a dynamic finite element analysis model for a wind turbine gearbox in which a number of internal gears mesh with each other in a complex pattern. Differing from the conventional dynamic models in which the detailed gear teeth are fully modeled or gears and shafts are replaced with lumped masses, the tooth contact between a pair of gears is modeled using a spring element. The equivalent spring constant is determined by computing the stiffness of a gear tooth using a finite element analysis. The numerical accuracy of the proposed dynamic model is verified through a benchmark experiment of a gearbox with simple gear transmission system. In addition, the natural frequencies and dynamic responses of a 5 MW wind turbine gearbox that are obtained by the proposed modeling technique are given to support its validity and effectiveness.

Publisher

ASME International

Subject

Applied Mathematics,Mechanical Engineering,Control and Systems Engineering,Applied Mathematics,Mechanical Engineering,Control and Systems Engineering

Reference16 articles.

1. Wind Turbine Concept Market Penetration Over 10 Years (1995–2004);Wind Energy,2007

2. Wind Turbine Design With Emphasis on Darrieus Concept,2002

3. American National Standard for Design and Specification of Gearboxes for Wind Turbines;American Gear Manufacturers Association,2003

4. The Evolution of Wind Turbine Design Analysis—A Twenty Year Progress Review;Wind Energy,1998

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