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›R&D›Oil & Gas, Offshore Wind Joint Industry Project Leads to WIN WIN Situation
R&D

May 4, 2016 · about 10 years ago

Oil & Gas, Offshore Wind Joint Industry Project Leads to WIN WIN Situation

The DNV GL-led WIN WIN (WINd-powered Water INjection) project, which gathered industry players from oil & gas and offshore wind sectors, including ExxonMobil, ENI Norge, Nexen Petroleum UK Ltd., Statoil, VNG Norge, PG Flow Solutions and ORE Catapult, is on the right track to make the best use of bot

3 minutes read
  • LinkedIn
  • X
  • Email

The DNV GL-led WIN WIN (WINd-powered Water INjection) project, which gathered industry players from oil & gas and offshore wind sectors, including ExxonMobil, ENI Norge, Nexen Petroleum UK Ltd., Statoil, VNG Norge, PG Flow Solutions and ORE Catapult, is on the right track to make the best use of both offshore energy industries in a single project.

The WIN WIN project shows that for suitable fields, wind-powered water injection is technically feasible, capable of meeting performance targets, and offers a cost-competitive alternative to conventional water injection solutions, DNV GL stated.

For the past year, the WIN WIN joint industry project (JIP) partners have worked to develop the concept of using floating wind turbines to power a water injection system in detail, and assess its technical and commercial feasibility. Technical and operational aspects as well as costs have been assessed.

No major challenges have been identified through the JIP’s study. Analyses of system performance examining site specific cases from JIP partners have shown that WIN WIN is able to meet the operator’s key performance requirements such as injection volume targets, as well as reliability and minimized downtime.

“For the first time we can now see renewable energy as a large scale source of power to offshore oil & gas operations. By utilising the recent developments of floating offshore wind turbines this concept can offer a clean, reliable, and cost effective alternative for powering water injection in offshore locations. The WIN WIN project showcases that the oil and gas industry can become a creative force in solving the world’s energy trilemma by driving development of reliable, clean and affordable technologies. This is a win for both the oil and gas and for the wind power industries,” said Remi Eriksen , Group President and CEO of DNV GL.

“We are encouraged by recent advances in wind technology, particularly for niche applications such as offshore oil and gas operations,” said Sara Ortwein , President of ExxonMobil Upstream Research Company. “Such technological advances improve the economic feasibility for wind to contribute to the overall energy supply mix.”

“Supplying clean power to oil & gas installations was part of the original idea behind Statoil’s Hywind concept,” says Hanne Wigum , Head of Renewable Technology Development in Statoil. “The WIN WIN concept represents an alternative source of electricity and has the potential to open up new opportunities for field development.”

The costs for wind powered water injection have been compared with a conventional alternative where water is injected via a flow line from the host platform. While the WIN WIN technology has higher operational expenditures (OPEX) compared to a conventional alternative, the significantly lower capital expenditure (CAPEX) means that it compares favourably over the long term. WIN WIN is therefore a commercially competitive alternative in a range of cases, particularly when host platform capacity is limited or injection wells are located far away, DNV GL said.

“For the specific example case assessed in the report, we are looking at a potential cost saving of approximately 20 percent compared to a conventional solution. This will of course vary greatly between cases,” said Johan Sandberg , project sponsor and segment leader of floating wind turbines at DNV GL.

“To develop the concept further, a next step would be to test critical subsystems in a small scale physical set-up. The key objective would be to gain assurance that the components integrated in this configuration will offer satisfactory performance over time with a variable power input. A potential phase 2 of the JIP is being explored with some of the current JIP partners,” he added.

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

R&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

New Company Launches Deepwater Offshore Wind Foundation Technology
Business development

New Company Launches Deepwater Offshore Wind Foundation Technology

26 days ago

A photo of the Rampion offshore wind farm off Brighton, UK, in sunrise
Featured

Ten Most Read News on offshoreWIND.biz in 2025

about 7 months ago

Daily offshore wind news in your mailbox

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

Subscribe free

Related news

New Company Launches Deepwater Offshore Wind Foundation Technology
Business development

New Company Launches Deepwater Offshore Wind Foundation Technology

26 days ago
A photo of the Rampion offshore wind farm off Brighton, UK, in sunrise
Featured

Ten Most Read News on offshoreWIND.biz in 2025

about 7 months ago