Numerical Analysis and Scaled High Resolution Tank Testing of a Novel Wave Energy Converter

Author:

Rhinefrank Ken,Schacher Al,Prudell Joe1,Cruz Joao2,Stillinger Chad,Naviaux David,Brekken Ted,von Jouanne Annette3,Newborn David,Yim Solomon,Cox Dan4

Affiliation:

1. Columbia Power Technologies, LLC 4920 SW 3rd Street, Suite A, Corvallis, OR 97333

2. GL Garrad Hassan Ibérica SLU, Rua Nova do Almada, No. 59, 2nd Floor, Lisboa 1200-288, Portugal

3. School of Electrical Engineering and Computer Science, Oregon State University, Corvallis, OR 97331

4. O. H. Hinsdale Wave Research Laboratory, Oregon State University, Corvallis, OR 97331

Abstract

This paper presents a novel point absorber wave energy converter (WEC), developed by Columbia Power Technologies (COLUMBIA POWER), in addition to the related numerical analysis and scaled wave tank testing. Three hydrodynamic modeling tools are employed to evaluate the performance of the WEC, including WAMIT, GL Garrad Hassan's GH WaveDyn, and OrcaFlex. GH WaveDyn is a specialized numerical code being developed specifically for the wave energy industry. Performance and mooring estimates at full scale are evaluated and optimized, followed by the development of a 1:33 scale physical model. The physical tests of the 1:33 scale model WEC were conducted at the multidirectional wave basin of Oregon State University's O.H. Hinsdale Wave Research Laboratory, in conjunction with the Northwest National Marine Renewable Energy Center (NNMREC). This paper concludes with an overview of the next steps for the modeling program and future experimental test plans.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

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2. Experimental Studies of Interaction Forces Affect the Position of Vertical Plates on Oscillating Heave Plates with Cylindrical Bodies in Regular Waves;International Journal of Renewable Energy Development;2020-02-06

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5. Report of Committee V.4: Offshore renewable energy;Ships and Offshore Structures XIX;2015-09-03

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