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Testing and Deployment
This is an LCOE (levelized cost of energy) baseline assessment for the Wave Carpet.
Previsic, M. et al Re Vision Consulting (2017)
Jul 26, 2017
Wave tank tests at Stevens Institute of Technology quantified the ability of near-surface platforms to concentrate wave energy over the platform. Due to the instantaneous change in water depth, Mass, Energy, and Power are Conserved in this Process. The Energy and Power concentrat...
Raftery, M. Martin & Ottaway (2010)
Aug 10, 2010
This is the raw LCOE model used to establish baseline performance for the M3 Wave DMP/APEX submerged mid-column pressure differential WEC. The model includes initial capital cost, levelized replacement cost, levelized operations and maintenance cost, and net annual energy producti...
M3 Wave (2016)
Feb 28, 2016
The objective of the project is to advance the Technology Readiness Level (TRL) of the Wave Energy Converter (WEC) developed by CalWave Wave Power Technologies Inc (CalWave) through advanced numerical simulations, dynamic hardware tests, and ultimately a scaled open water demonstr...
Boerner, T. et al CalWave Power Technologies Inc. (2019)
Jun 03, 2019
NREL MOIS data files for the Azura grid-connected deployment at the 30-meter berth of the US Navy's Wave Energy Test Site (WETS 30m Site) at the Kaneohe Marine Corps Base Hawaii (MCBH) on the windward (northeast) coast of the island of Oahu, HI. See general documentation describi...
National Renewable Energy Laboratory (2016)
Jun 07, 2016
Configurations as tested and modeled in final phase of project.
Morrow, M. and Delos-Reyes, M. M3 Wave (2017)
Aug 08, 2017
Test data from the 1/15th Wave Tank Tests of the Azura performed in 2017/2018 to validate the power performance and survivability of the Azura Design planned for deployment at the US Navy's Wave Energy Test Site. Raw and processed data included, along with test plan, test report, ...
Ling, B. Northwest Energy Innovations (2018)
Feb 02, 2018
A report on state estimation for advanced control of wave energy converters (WECs), with supporting data models and slides from the overview presentation. The methods discussed are intended for use to enable real-time closed loop control of WECs.
Coe, R. and Bacelli, G. Sandia National Laboratories (2017)
Apr 25, 2017
Columbia Power LCOE (levelized cost of energy) Model for the Stingray H1 at the DOE Reference Site of Humboldt, CA. The model is integrated with and reports LCOE from DOE Cost Breakdown Structure
Columbia Power Technologies, Inc. (2017)
Mar 06, 2017
Projected LCOE model based on information gained during project performance.
Morrow, M. and Delos-Reyes, M. M3 Wave (2018)
Aug 01, 2018