考虑规则波浪和潮汐变化的双坡道海岸漫顶装置结构设计的几何评价

J. C. Martins, Marcelo Moraes Goulart, L. Isoldi, E. D. Santos, M. Gomes, L. Rocha
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引用次数: 0

摘要

对环境和新的发电方式的关注,导致了对可再生能源的研究,其中波浪能转换器(WECs)是一种选择,但仍然存在许多挑战,以确定如何最好地实现波浪的能量转换为电能。在这项工作中,考虑到坡道(ϕ1和ϕ2)的面积分数等于0.0006,坡道的高度和长度之比(H1/L1 = H2/L2)等于0.3,以最大化双坡道过顶装置的可用功率(Pd)为目的进行了数值研究。坡道之间的距离(Lg)有三个变化值:1.0;1.5 m和2.0 m,另外自由水面(h)有三个值:9.8;10.0和10.2 m;模拟潮汐效应。在几何评价(确定搜索域)和优化中分别采用结构设计和穷举搜索方法。波的产生采用二阶Stokes理论,波周期T为7.5 s,波高H为1.0 m。结果表明,装置上坡道没有积水现象,且随着Lg的增大,Pd在h = 10.0和10.2 m时均有所增加,在h = 9、8 m时基本保持不变。和预期的一样,随着h的增加,Pd也增加了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GEOMETRIC EVALUATION USING CONSTRUCTAL DESIGN OF A COASTAL OVERTOPPING DEVICE WITH DOUBLE RAMP CONSIDERING A REGULAR WAVE AND TIDAL VARIATION
Concern for the environment and new ways of electricity generation, have led to studies of renewable energy sources, among these the Wave Energy Converters (WECs) are an option, however there are still many challenges to define how best to realize the conversion of the energy of the waves into electricity. In this work, a numerical study was carried out with the purpose of maximizing the available power (Pd) of a two-ramp overtopping device, considering the area fraction of ramps (ϕ1 and ϕ2) equal to 0.0006 and the ratio between height and length of the ramps (H1/L1 = H2/L2) equal to 0.3. The distance between the ramps (Lg) was varied in three values: 1.0; 1.5 and 2.0 m, besides three values for the free surface of water (h): 9.8; 10.0 and 10.2 m; simulating a tidal effect. The Constructal Design and Exhaustive Search methods were used, respectively, in the geometric evaluation (determination of a search field) and optimization. For the wave generation, the Second Order Stokes Theory was used, with wave period (T) of 7.5 s and wave height (H) 1.0 m. The results showed that there was no accumulation of water in the upper ramp of the device, in addition, with the increase of Lg there was an increase of Pd in h = 10.0 and 10.2 m, and Pd kept practically constant in h = 9, 8 m. And, as expected, with increasing of h, there was an increase in Pd.
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