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Home›Technology›SCHOTTEL HYDRO to Provide Pitch Hub for AR1500 Tidal Turbine
Technology

July 7, 2015 · about 11 years ago

SCHOTTEL HYDRO to Provide Pitch Hub for AR1500 Tidal Turbine

SCHOTTEL HYDRO will manufacture and deliver the variable pitch hub for the AR1500 turbine for Phase 1a of the MeyGen tidal energy project under contract to Lockheed Martin. The MeyGen Phase 1a AR1500, a 1.5 MW seabed mounted turbine, is being designed and delivered by Atlantis Resources and Lockheed

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SCHOTTEL HYDRO will manufacture and deliver the variable pitch hub for the AR1500 turbine for Phase 1a of the MeyGen tidal energy project under contract to Lockheed Martin.

The MeyGen Phase 1a AR1500, a 1.5 MW seabed mounted turbine, is being designed and delivered by Atlantis Resources and Lockheed Martin. The MeyGen project intends to generate up to 398 MW with offshore tidal turbines by the early 2020s.

SCHOTTEL HYDRO will provide the hub with a housing diameter of 2.4 meters and a weight of approximately 35 tons to the AR1500, which needs a strong and robust hub to accommodate the essential pitch mechanism, the company said. The active pitch mechanism inside adjusts the rotor blades to the flow and thus adds to the optimum alignment of the full yaw turbine.

“Taking part in this project is a great honor for us and our work,” says Jens-Henning Bernstein, project manager at SCHOTTEL HYDRO . “For this project we especially build on the success of the turbine shaft, hub and pitch mechanism including hydraulics and controls we provided to the first Hammerfest HS1000 turbine in 2011.”

SCHOTTEL HYDRO will deliver the hub in early 2016, and the installation of the AR1500 is planned for later the same year.

MeyGen, owned by tidal power pioneer Atlantis Resources, is located in the Inner Sound of the Pentland Firth, a strait upstream of northern Scotland, with strong tidal currents.

In addition to turbine installations, the first project phase also includes the construction of the onshore infrastructure to support the project. Each turbine will have its own connection to shore by cables running in horizontal directional drilled bores through the seabed. The cables terminate in a Power Conversion Centre where the electricity will be transformed and exported directly to the UK National Grid.

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