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Genetic based optimisation of the design parameters for an array-on-device orbital motion wave energy converter

机译:遗传基于轨道轨道运动波能转换器设计参数的优化

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Optimisation of Wave Energy Converters (WECs) is a very important topic to obtain competitive devices in the energy market. Wave energy is a renewable resource that could contribute significantly to a future sustainable world. Research is on-going to reduce costs and increase the amount of energy captured. This work aims to optimise a WaveSub device made up of multiple floats in a line by investigating the influence of 6 different design parameters such as the number of floats. Here we show that a multi-float configuration of 6 floats is more competitive in terms of Levelised Cost Of Energy (LCOE) compared to a single float configuration with a LCOE reduction of around 21%. We demonstrate that multi-float configurations of this device reduce the LCOE especially because of the reduction of grid connection, installation, control and mooring costs. From the power capture perspective, optimized multi-float configurations still have similar capacity factors to the single float configuration. This research gives important indications for further development of the WECs from an optimisation perspective. These promising results show that more complex, optimized, multi-float configurations could be investigated in future.
机译:波能转换器(WECs)的优化是在能源市场中获得竞争设备的一个非常重要的主题。波能量是一种可再生资源,可以对未来的可持续发展世界贡献。研究正在降低成本并增加所捕获的能量。这项工作旨在通过研究6种不同的设计参数,例如浮子的数量的影响,优化由一条线的多个浮点组成的波座装置。在这里,我们表明,与单一浮点配置相比,6个浮点数的多浮点配置为6个浮点数的能量(LCoE)成本比单一浮点配置约为21%。我们展示了该设备的多浮点配置减少了LCoE,特别是由于电网连接,安装,控制和系泊成本的降低。从Power Capture Perspetive,优化的多浮点配置仍然具有与单个浮动配置相似的容量因素。本研究提供了从优化角度进一步发展WEC的重要迹象。这些有希望的结果表明,将来可以调查更复杂,优化的多浮法配置。

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