Integration of cost modelling within the micro-siting design optimisation of tidal turbine arrays
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Published version
Author(s)
Culley, DM
Funke, SW
Kramer, SC
Piggott, MD
Type
Journal Article
Abstract
The location of individual turbines within a tidal current turbine array – micro-siting – can have a significant impact on the power that the array may extract from the flow. Due to the infancy of the industry and the challenges of exploiting the resource, the economic costs of realising industrial scale tidal current energy projects are significant and should be considered as one of the key drivers of array design. This paper proposes a framework for the automated design of tidal current turbine arrays in which costs over the lifespan of the array may be modelled and considered as part of the design optimisation process. To demonstrate this approach, the cost of sub-sea cabling is incorporated by implementing a cable-routing algorithm alongside an existing gradient-based array optimisation algorithm. Three idealised test scenarios are used to demonstrate the effects of a financial-return optimising design approach as contrasted with a power maximisation approach.
Date Issued
2015-06-27
Date Acceptance
2015-06-07
Citation
Renewable Energy, 2015, 85, pp.215-227
ISSN
1879-0682
Publisher
Elsevier
Start Page
215
End Page
227
Journal / Book Title
Renewable Energy
Volume
85
Copyright Statement
© 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license
(http://creativecommons.org/licenses/by/4.0/).
(http://creativecommons.org/licenses/by/4.0/).
License URL
Sponsor
Engineering & Physical Science Research Council (E
Engineering & Physical Science Research Council (E
Grant Number
EP/L000407/1
EP/J010065/1
Subjects
Science & Technology
Technology
Energy & Fuels
Marine renewable energy
Tidal turbines
Gradient-based optimisation
Adjoint method
Shallow water equations
Array layout
Cable-routing
Financial-return
TRAVELING SALESMAN PROBLEM
GENETIC ALGORITHM
WIND
Energy
0906 Electrical And Electronic Engineering
0913 Mechanical Engineering
Publication Status
Published