Wave generation by an oscillating surface-pressure and its application in wave-energy extraction

Author:

Sarmento A. J. N. A.,Falcão A. F. de O.

Abstract

A two-dimensional analysis, based on linear surface-wave theory, is developed for an oscillating-water-column wave-energy device in water of arbitrary constant depth. The immersed part of the structure is assumed of shallow draught except for a submerged vertical reflecting wall. Both the cases of linear and nonlinear power take-off are considered. The results show that air compressibility can be important in practice, and its effects may in general be satisfactorily represented by linearization. The analysis indicates that using a turbine whose characteristic exhibits a phase difference between pressure and flow rate may be a method of strongly reducing the chamber length and turbine size with little change in the capability of energy extraction from regular waves. It was found in two examples of devices with strongly nonlinear power take-off that the maximum efficiency is only marginally inferior to what can be achieved in the linear case.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference13 articles.

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2. Evans D. V. 1978 The oscillating water column wave-energy device.J. Inst. Maths Applics 22,423–433.

3. Lamb H. 1905 On deep water waves Proc. Lond. Math. Soc. (2) 2,371–400.

4. Moody G. W. 1979 The NEL oscillating water column: recent developments. Proc. 1st Symp. Wave Energy Utilization, Gothenburg .

5. Evans D. V. 1982 Wave-power absorption by systems of oscillating surface pressure distributions.J. Fluid Mech. 114,481–499.

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