Oregon State University to Move Forward with Wave Energy Project

On Monday, March 1, federal energy regulators gave Oregon State University permission to move forward with an offshore wave energy testing facility.

The PacWave South project is meant to further the development of wave energy technology, which uses the motion of water and currents to produce electricity. Waves off the coast of Oregon have been discovered to have a much higher wave energy generation potential than nearby California or Washington, at least by coastal area. The Oregon Department of Energy estimates that the near-shore waves could eventually be able to generate power for 28 million homes every year.

Wave energy testing facility

The university project must pass a final review period before it can begin construction, but it has already received a license from the Federal Energy Regulatory Commission. “It’s huge,” said Burke Hales, the OSU project’s chief scientist. “It’s the first license of its type to be issued in the United States.”

According to the project’s website, PacWave South will be a wave energy test facility that is grid-connected, accredited, and pre-permitted. Because the entire regulatory process is being done before construction starts, it will be ready to test all expected types of wave energy devices, save millions of dollars, and allow development and optimization of those designs to move more quickly.

The construction will cover two square nautical miles of ocean and include four ocean berths connected to shore by a 7-mile cable route. Infrastructure will include data cables, electric cables, and a grid connection station on land, giving companies easy and immediate access to the wave energy converters. Across its four berths, it will be able to test different technologies simultaneously, and it has space for up to 20 devices.

Oregon State University is developing the project with the U.S. Department of Energy, the State of Oregon, and local stakeholders.

“We hope to be moving forward this summer with groundbreaking for building our shoreside facility,” said Hales. He also said that the underground and sub-surface work for running transmission lines should begin this year, also. They aim to begin installing the test facility’s offshore components in 2022.

About the Author

Matt Jones is senior editor of Spaces4Learning. He can be reached at [email protected].

Featured

  • 144-Year-Old High-School Campus Debuts New Academic Facility

    San Diego High School (SDHS) in San Diego, Calif., recently held a ribbon-cutting ceremony for a new student services and classroom building; the project is part of a larger SDHS Whole Site Modernization project that began in 2022.

  • North Carolina District Completes New Elementary School

    The Wake County Public School System (WCPSS) in Holly Springs, N.C., recently announced that construction on a new elementary school has finished, according to a news release. Rex Road Elementary School measures in at 133,000 square feet and is the fifteenth school that general contractor Balfour Beatty has completed for the district.

  • Benson Polytechnic High School in Portland, OR

    Preserving Legacy, Designing for the Future

    As historic academic buildings age, institutions face a difficult decision: preserve and adapt or demolish and rebuild. How do we honor the legacy of these spaces while adapting them to meet the needs of modern learners?

  • Zurn Elkay Releases 2025 Sustainability Report

    Zurn Elkay Water Solutions recently announced the release of its annual sustainability report, according to a news release. The 2025 report discusses the organization’s efforts to maintain good environmental stewardship and the solutions provided in helping customers meet sustainability goals.