GE Haliade-X 13 MW Turbines to Spin on Vineyard Wind 1

GE Renewable Energy has received a firm order from Vineyard Wind to supply Haliade-X wind turbines for Vineyard Wind 1, the first utility-scale offshore wind installation in the US.

GE was announced as the preferred turbine supplier for the project in December of 2020. Vineyard Wind 1 recently became the first offshore wind farm in the US to achieve a financial close, which enabled Vineyard Wind, a joint venture between Avangrid Renewables and Copenhagen Infrastructure Partners, and GE to achieve this latest contractual milestone.

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The project will be installed 15 miles off the coast of Martha’s Vineyard in Massachusetts and will feature 62 units of the Haliade-X 13 MW turbine with a combined capacity of 806 MW.

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John Lavelle, President & CEO, Offshore Wind, GE Renewable Energy, said: ”We’re pleased to supply the first utility-scale offshore installation in the US, increasing the potential of the turbine to generate more power for our customer. Our Haliade-X technology combined with our innovative digital capabilities means GE is well positioned to support the growth of offshore wind in the US and globally.”

With energy generation expected to start in 2023, the Vineyard Wind 1 project will provide electricity for more than 400,000 homes and businesses in Massachusetts and is expected to reduce carbon emissions by more than 1.6 million tons per year.

”After achieving financial close last month, we are now at the point when this industry is no longer just talking about opportunity but delivering it,” said Vineyard Wind CEO Lars T. Pedersen.

”With the order now placed for GE’s Haliade-X turbines, we are setting the stage for a new industry, one that will create jobs, save ratepayers more than $1 billion and contribute greatly to a reduction in carbon pollution.”

GE’s Haliade-X prototype operating in the Netherlands is the most powerful offshore wind turbine built today and received its official type certification from DNV GL in early 2021.

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Photo: GE Renewable Energy