Wave energy converter modeling in the frequency domain: A design guide
Bret Bosma, Zhe Zhang, Ted Brekken, Mihrimah Ozkan, Cameron McNatt, Solomon C. S. Yim
Abstract
Bret Bosma, Zhe Zhang, Ted Brekken, Mihrimah Ozkan, Cameron McNatt, Solomon C. S. Yim
Abstract
Wave energy converter research continues to advance and new developers are continuing to emerge, leading to the need for a general modeling methodology. This work attempts to outline the design methodology necessary to perform frequency domain analysis on a generic wave energy converter. A two-body point absorber representing a generic popular design was chosen and a general procedure is presented showing the process to obtain first pass preliminary performance results. The result is a design guide that new developers can adapt to their particular design and wave conditions, which will provide the first steps toward a cost of energy estimate. This will serve the industry by providing a sound methodology to accelerate the new development of wave energy converters.
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Wave energy converter research continues to advance and new developers are continuing to emerge, leading to the need for a general modeling methodology. This work attempts to outline the design methodology necessary to perform frequency domain analysis on a generic wave energy converter. A two-body point absorber representing a generic popular design was chosen and a general procedure is presented showing the process to obtain first pass preliminary performance results. The result is a design guide that new developers can adapt to their particular design and wave conditions, which will provide the first steps toward a cost of energy estimate. This will serve the industry by providing a sound methodology to accelerate the new development of wave energy converters.
Key concepts: Wave energy converter, Converters, Computer science, Energy (signal processing), Process (computing), Point (geometry), Domain (mathematical analysis), Work (physics)