Pre-Design Selection of the Rated Power of a Heaving Point Absorber Wave Energy Converter
Journal article, 2025

Wave energy converters (WECs) have significant potential for renewable energy generation, but early-stage design processes often require lengthy simulations. This study focuses on the pre-design selection of the rated power for a heaving point-absorber WEC. Addressing the gap in simplified methodologies, this study evaluates the wave energy resource, selects operational sea-states, and assesses device performance using time-domain simulations and linear potential flow theory. The results revealed that a WEC rated at 87% below peak power can capture 91% of the total available energy, achieving a balance between energy efficiency and cost-effectiveness. Furthermore, a simplified method to estimate rated power based on a constant ratio between mean and RMS power is proposed, offering significant potential for early-stage design applications. Future work should validate this approach across diverse WEC types and wave climates.

rated power

wave energy resource

capture width ratio

pre-design

wave energy converter

Author

Guilherme Moura Paredes

proMetheus Res Unit Mat Energy & Environm Sustaina

Alexandra Tokat

Lund University

Torbjörn Thiringer

Chalmers, Electrical Engineering, Electric Power Engineering

OCEANS-SWITZERLAND

2673-1924 (eISSN)

Vol. 6 1 13

Subject Categories (SSIF 2025)

Fluid Mechanics

Marine Engineering

Energy Engineering

DOI

10.3390/oceans6010013

More information

Latest update

4/4/2025 1