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NUMERICAL SIMULATION AND OPTIMIZATION OF A WAVE ENERGY CONVERTER FOR THE IZU ISLANDS SEA IN JAPAN

机译:日本伊豆岛海域波能转换器的数值模拟和优化

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The purpose of this study is the numerical simulation and control optimization of あ wave energy converter to estimate the power at a test site in the Izu Islands. In Japan, ocean energy is once again being seriously considered; however, since there are many inherent problems due to severe conditions such as the strong swells and large waves, estimations are important when designing such devices. The numerical simulation method in this study combines the wave interaction analysis software WAMIT and an in-house time-domain simulation code using the Newmark-β method, and introduces approximate complex-conjugate control into the code. The optimized parameters were assessed for a regular sine wave and an irregular wave with a typical wave spectrum. With the optimized parameters, average and maximum output power were estimated for the observed wave data at the test site. The results show a more than 100 kW average power output and a several times larger maximum power output.
机译:这项研究的目的是对あ波能量转换器进行数值模拟和控制优化,以估算伊豆群岛一个测试点的功率。在日本,海洋能再次被认真考虑。但是,由于恶劣条件(例如强隆起和大浪)存在许多内在的问题,因此在设计此类设备时进行估算很重要。本研究中的数值模拟方法将波浪相互作用分析软件WAMIT与使用Newmark-β方法的内部时域模拟代码相结合,并将近似复共轭控制引入到代码中。针对具有典型波谱的规则正弦波和不规则波,评估了优化的参数。利用优化的参数,可以估算出测试现场观察到的波数据的平均和最大输出功率。结果表明,平均功率输出超过100 kW,最大功率输出提高了几倍。

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