- Category: Articles
Storage for Large-Scale Wind Power

By Willett Kempton and Amardeep Dhanju, University of Delaware, USA
- Category: Articles
Soil Investigations for Offshore Wind Turbine Projects

By Tove Feld, DNV Global Wind Energy, Denmark
- Category: Articles
A Program for Wind Turbine Design

By Daniel Fonseca de Carvalho e Silva, Luiz Henrique Gomes Pereira and Gustavo C.R. Bodstein, Brazil
- Category: Articles
The New Aeroelastic Code HAWC2
The article describes work to investigate the effects on tower dynamics when mounting a turbine on a monopile foundation offshore compared to a similar onshore installation. Changes in frequency, mode shapes and damping were investigated, including effects of hydrodynamics and non-linear soil properties. The tool used for the investigation is the new aeroelastic code HAWC2, which is based on a multibody formulation. This formulation is very general, which means that it can handle any structural object (body) as well as large rotations between the bodies and their associated non-linear effects. Thus, for example, complex foundation types such as very flexible monopile foundations, tripod structures and even floating support structures can be simulated in the code.
By Torben J. Larsen, Helge A. Madsen and Kenneth Thomsen, Risø, National Laboratory Denmark
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- Category: Articles
The Beamforming Technique in Acoustic Imaging

By Vincent Benoit, ACB Engineering, France
- Category: Articles
A Wind Turbine Station Designed to Capture Vertical ‘Winds’

By Eric Michaud and Louis Michaud, Vortex Engine, Canada
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- Category: Articles
Roxtec and Multibrid Work Together to Provide Solutions

By Ulf Petersson, Roxtec International, Sweden