Numerical and experimental analysis of the power output of a point absorber wave energy converter in irregular waves

Rahmati, Mohammad and Aggidis, G. A. (2016) Numerical and experimental analysis of the power output of a point absorber wave energy converter in irregular waves. Ocean Engineering, 111. pp. 483-492. ISSN 0029-8018

Full text not available from this repository.
Official URL: http://dx.doi.org/10.1016/j.oceaneng.2015.11.011

Abstract

This paper examines the optimum power output of a pitching-surge point absorber wave energy converter in irregular wave climates. A mathematical model based on frequency domain is used as the first step to estimate the hydrodynamic parameters of the device and its potential power output in realistic sea waves. The numerical results predict that the point absorber energy converter has the potential to absorb more energy than what is contained in its own geometrical width. The optimum power of the device is then obtained from wave tank experiments in irregular wave climates. The comparison of numerical and experimental results demonstrates that the frequency domain method based on linear theory will lead to an overestimation of the energy absorption for this device. The frequency domain method provides an upper estimate for wave energy absorption due to the non-linear, viscous effects and constrained amplitude of device oscillation. However, comparison of the performance of the device with other point absorber wave energy converters shows that this wave energy converter is one of the most efficient in terms of absorbing wave energy.

Item Type: Article
Uncontrolled Keywords: Wave energy converter, Point absorber, Irregular waves, Capture width ratio
Subjects: H100 General Engineering
Department: Faculties > Engineering and Environment > Mechanical and Construction Engineering
Depositing User: Becky Skoyles
Date Deposited: 12 Nov 2018 14:57
Last Modified: 11 Oct 2019 18:45
URI: http://nrl.northumbria.ac.uk/id/eprint/36624

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