offshoreWIND.biz
  • Fixed-Bottom
  • Floating Wind
  • Supply Chain
  • News
  • About
  • Contact
JobsNewsletter
offshoreWIND.biz logo
Topics
  • Fixed-Bottom
  • Floating Wind
  • Supply Chain
  • Power-to-X
  • Grid Connection
Network
  • Dredging Today
  • NavalToday
  • Offshore Energy
  • Offshore Wind
  • Maritieme Vacaturebank
Company
  • Advertising
  • Newsletter
  • Jobs
  • Privacy
  • Report your news

© 2026 Navingo. All rights reserved.

Home›Grid Connection›Ecofys’ Carries Out FEED Study for Navitus Bay
Grid Connection

January 29, 2014 · about 12 years ago

Ecofys’ Carries Out FEED Study for Navitus Bay

Ecofys performed a Front End Engineering & Design (FEED) study for Navitus Bay Wind Park, which identified the most cost-efficient electrical infrastructure design. This takes the development of the offshore wind farm an important step further. The proposed Navitus Bay Wind Park is a joint venture b

1 minutes read
  • LinkedIn
  • X
  • Email

Ecofys performed a Front End Engineering & Design (FEED) study for Navitus Bay Wind Park, which identified the most cost-efficient electrical infrastructure design.

This takes the development of the offshore wind farm an important step further. The proposed Navitus Bay Wind Park is a joint venture between Eneco Wind UK Ltd and EDF Energy Renewables and is currently being developed off the Dorset and Hampshire coasts, to the west of the Isle of Wight.

In a typical year, Navitus Bay Wind Park could generate enough sustainable energy to power up to 790,000 homes.

To identify an electrical infrastructure that will be cost-efficient to build and operate, Ecofys’ FEED study focussed on three key subsystems:

Ecofys made various designs to detect the best combination. For the inter-array cables, grid designs at voltage levels of 33kV and 66 kV were prepared, whereas for the export cables voltage levels of 150 kV, 220 kV and 275 kV were considered. The assessment demonstrated the considerable impact of the choice of locations and the quantity of OHVS in relation to the infield grid and the export cable design. Evaluating the lifetime costs and non-cost criteria of the various designs resulted in an optimal electrical infrastructure design for the Navitus Bay Wind Park.

[mappress]

Press release, January 29, 2014; Image: navitusbaywindpark

Reach the offshoreWIND.biz industry in one go!

offshoreWIND.biz is read by thousands of professionals every day.

Increase your visibility with banners, tell your story with a branded article, and showcase your expertise with a full-page company profile in our business directory.

CONTACT

Follow offshoreWIND.biz on:

Filed under

Grid ConnectionR&D

Daily offshore wind news in your mailbox

Join thousands of industry professionals who start their day with our newsletter.

Trending Now

  1. 1Cadeler Adds Wind Ace to Fleet, First Stop East Anglia Two
  2. 2Turbine Installation at Thor Offshore Wind Farm Reaches Halfway Point
  3. 3South Korean Cable Maker Takes Delivery of Its Second Cable Laying Vessel
  4. 4Aker Solutions Joins Bellrock Floating Offshore Wind Farm Team

Related articles

Van Oord and Sumitomo Sign HVDC Subsea Cable Systems Deal with SSEN Transmission
Cables

Van Oord and Sumitomo Sign HVDC Subsea Cable Systems Deal with SSEN Transmission

18 days ago

New Study Shows How North Sea Offshore Wind Can Yield More While Costing Less
Industry

New Study Shows How North Sea Offshore Wind Can Yield More While Costing Less

20 days ago

Daily offshore wind news in your mailbox

Join thousands of industry professionals who start their day with our newsletter.

Subscribe free

Related news

Van Oord and Sumitomo Sign HVDC Subsea Cable Systems Deal with SSEN Transmission
Cables

Van Oord and Sumitomo Sign HVDC Subsea Cable Systems Deal with SSEN Transmission

18 days ago
New Study Shows How North Sea Offshore Wind Can Yield More While Costing Less
Industry

New Study Shows How North Sea Offshore Wind Can Yield More While Costing Less

20 days ago