Floating offshore wind turbines port requirements for construction

Author:

Crowle AP1ORCID,Thies PR1

Affiliation:

1. College of Engineering, Mathematics and Physical Sciences, University of Exeter, Cornwall, UK

Abstract

Floating offshore wind is an emerging technology that holds considerable potential to utilise areas deeper than 60 m for sustainable energy generation. As the floating offshore wind turbine industry continues to develop and grow, the capabilities of established port facilities need to be assessed as to their ability to support the expanding construction and installation requirements. This article assesses current infrastructure requirements and projected changes to port facilities that may be required to support the floating offshore wind industry. Understanding the infrastructure needs will help to identify the port-related requirements. Floating offshore wind turbines can be installed further out to sea and in deeper waters than traditional fixed offshore wind arrays, meaning they can take advantage of stronger winds and additional sea locations. Separate ports are required for substructure construction and fit-out of the turbines and maintenance. Large areas are required, about twice the plan area of the structure, for the laydown of mooring equipment, inter array cables, turbine blades and nacelles. The capabilities of established port facilities to support floating wind farms can be assessed by evaluation of size of substructures, height of wind turbine with regards to the cranes for fitting of blades, distance to offshore site and offshore installation vessel characteristics. Spar, barge, TLP and semisubmersible types have been deployed as demonstration units. Pre commercial units have been installed off the coasts of Portugal and the east coast of Scotland. This article reviews and defines the port and shipyard requirements for floating offshore wind turbines. It will support decision-makers to guide port infrastructure investments and project developers in their site selections. There up to 15 port functions that need to be considered, for construction, assembly and support of offshore activities. These could be fulfilled by one or a combination of different ports.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Ocean Engineering

Reference13 articles.

1. www.vestas.com (accessed September 2021).

2. Panel discussion and feedback at the Floating Offshore Wind Conference, Aberdeen, Organised by Renewable UK and Scotish Renewables, 15–16 September 2021.

3. Lizet R, Mattia C, Sabina P. Report ‘Ports a key enabler for floating offshore wind sector’. Wind Europe, WindEurope Business Intelligence, September 2020.

4. null

5. Report ‘Benefits Of Floating Offshore Wind To Wales And The South West’. Ore Catapult, Report no 8996, 2018.

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