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  • Format: ePub

With this self-contained and comprehensive text, students and researchers will gain a detailed understanding of the fundamental aspects of the hydrodynamic control of wave energy converters. Such control is necessary to maximise energy capture for a given device configuration and plays a major role in efforts to make wave energy economic. Covering a wide range of disciplines, the reader is taken from the mathematical and technical fundamentals, through the main pillars of wave energy hydrodynamic control, right through to state-of-the-art algorithms for hydrodynamic control. The various…mehr

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Produktbeschreibung
With this self-contained and comprehensive text, students and researchers will gain a detailed understanding of the fundamental aspects of the hydrodynamic control of wave energy converters. Such control is necessary to maximise energy capture for a given device configuration and plays a major role in efforts to make wave energy economic. Covering a wide range of disciplines, the reader is taken from the mathematical and technical fundamentals, through the main pillars of wave energy hydrodynamic control, right through to state-of-the-art algorithms for hydrodynamic control. The various operating principles of wave energy converters are exposed and the unique aspects of the hydrodynamic control problem highlighted, with a variety of potential solutions discussed. Supporting material on wave forecasting and the interaction of the hydrodynamic control problem with other aspects of wave energy device optimisation, such as device geometry optimisation and optimal device array layout, is also provided.

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Autorenporträt
Umesh Korde is the Richard and Elizabeth Henes Chair Professor in Wave Energy at Michigan Technological University. He is the author of numerous research publications and teaches graduate courses focusing on the hydrodynamics and control of wave energy devices. Korde also works on research in smart structures and acoustics. A focal area of his current research has been new techniques for modeling and control, including novel ways to utilize existing approaches. He is an associate editor for the journal Ocean Engineering and is a Fellow of the American Society of Mechanical Engineers (ASME).