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M. Kaiser, Brian Snyder (2012)
Offshore Wind Energy Cost Modeling
T. Kvalstad, F. Nadim, C. Arbitz (2001)
Deepwater Geohazards: Geotechnical Concerns and Solutions
H. Braam (2003)
O&M ASPECTS OF THE 500 MW OFFSHORE WIND FARM AT NL7
P. Schwabe, S. Lensink, M. Hand (2011)
IEA Wind Task 26 - Multi-national Case Study of the Financial Cost of Wind Energy; Work Package 1 Final Report
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Feasibility and cost of a floating wind farm - RSE – 2009 (in Italian
(2010)
Development of the Access System for Offshore Wind Turbines – Thesis – University of Delft 2010
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Impianti a fune
Work Package 1 Final Report IEA Wind Task 26 Multi - national Case Study of the Financial Cost of Wind Energy – March 2011 15
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P. Tavner (2012)
Offshore Wind Turbines: Reliability, availability and maintenance
G. Bussel, W. Bierbooms (2003)
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A. Arapogianni, G. Rodrigues, N. Fichaux, A. Zervos, G. Caralis (2013)
Comparing And Projecting The Levelised Cost Of Electricity Generated By New Gas, Coal, Nuclear Power Stations And Wind Energy (On- And Offshore)
This work proposes a new method in order to deploy an affordable and reliable way for maintenance when it is necessary to access to offshore wind farms. The new system, based on cableway infrastructure is aimed to allow a lower cost of maintenance compared to other system for the same kind of operation but also to improve the reactivity and accessibility compared to them. Maintenance activities are taken into consideration in term of cost, period, nature, accessibility of wind farm, kind of maintenance we want/need to use in order to ameliorate the availability/reliability of the wind farm. Five different configurations with related cableway system are analyzed in order to demonstrate that facing a reasonable increasing of Capital Cost, sizable saving and extra revenue can be obtained if projected on the expected life of wind farms
Wind Engineering – SAGE
Published: Jun 1, 2013
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