Numerical study of the effect of the relative depth on the overtopping wave energy converters according to constructal design

被引:15
|
作者
Dos Santos, Elizaldo Domingues [1 ]
Machado, Bianca Neves [2 ]
Zanella, Marcos Moisés [1 ]
Das Neves Gomes, Mateus [2 ]
Souza, Jeferson Avila [1 ]
Isoldi, Liércio André [1 ]
Rocha, Luiz Alberto Oliveira [3 ]
机构
[1] School of Engineering (EE), Federal University of Rio Grande (FURG), 96203-900 Rio Grande, Rio Grande do Sul, Brazil
[2] Graduate Program in Mechanical Engineering (PROMEC), Federal University of Rio Grande Do sul (UFRGS), 90050-170 Porto Alegre, Rio Grande do Sul, Brazil
[3] Mechanical Engineering Department (DEMEC), Universidade Federal Do Rio Grande Do sul (UFRGS), 90050-170 Porto Alegre, Rio Grande do Sul, Brazil
关键词
Reservoirs (water) - Air - Finite volume method - Wave energy conversion;
D O I
10.4028/www.scientific.net/DDF.348.232
中图分类号
学科分类号
摘要
The conversion of wave energy in electrical one has been increasingly studied. One example of wave energy converter (WEC) is the overtopping device. Its main operational principle consists of a ramp which guides the incoming waves into a reservoir raised slightly above the sea level. The accumulated water in the reservoir flows through a low head turbine generating electricity. In this sense, it is performed a numerical study concerned with the geometric optimization of an overtopping WEC for various relative depths: d/λ = 0.3, 0.5 and 0.62, by means of Constructal Design. The main purpose is to evaluate the effect of the relative depth on the design of the ramp geometry (ratio between the ramp height and its length: H1/L1) as well as, investigate the shape which leads to the highest amount of water that insides the reservoir. In the present simulations, the conservation equations of mass, momentum and one equation for the transport of volumetric fraction are solved with the finite volume method (FVM). To tackle with water-air mixture, the multiphase model Volume of Fluid (VOF) is used. Results showed that the optimal shape, (H1/L1)o, has a strong dependence of the relative depth, i.e., there is no universal shape that leads to the best performance of an overtopping device for several wave conditions.© (2014) Trans Tech Publications, Switzerland.
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页码:232 / 244
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