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A mixed-integer programming methodology to design tidal current farms integrating both cost and benefits: A case study in the Chacao Channel, Chile

机译:一种混合整数的编程方法,用于设计潮汐现行农场的整合成本和福利:智利Chacao Channel的案例研究

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摘要

In a tidal power plant the most important devices are the tidal current turbines that harvest the kinetic energy contained in the tide and convert it into electricity. The number of turbines to install, their spatial configuration, and the connection of submarine cables are critical aspects in the development of marine energy projects. Here, we present a mixed-integer programming methodology to design tidal current farms considering both cost and benefits. We propose a model that solves, concurrently, the turbine's locations and cable infrastructure by computing the number, locations, submarine connections of tidal turbines, and the tidal current farm's overall capacity. The proposed model considers location-based costs, including cable routing and loss from wake effect and electrical transmission, to maximize the project's economic viability. We demonstrate the methodology's utility by determining the optimal turbines' configuration in a real-life case study in the Chacao Chanel, Chile. Finally, practitioners can easily implement our methodology using any standard off-the-shelf mixed-integer programming software to evaluate their tidal current farm projects.
机译:在潮汐发电厂中,最重要的装置是收获潮汐中包含的动能并将其转换为电力的潮汐电流涡轮机。安装的涡轮机数量,空间配置和潜艇电缆的连接是海洋能源项目发展的关键方面。在这里,我们提出了一种混合整数的编程方法来设计考虑成本和益处的潮汐当前农场。我们提出了一种模型,通过计算潮汐轮机的数量,位置,潜艇连接以及潮流农场的整体容量来解决一个模型。拟议的模型考虑了基于位置的成本,包括电缆路由和唤醒效果和电气传输的损失,以最大限度地提高项目的经济可行性。我们通过在智利Chacao Chanel的真实案例研究中确定最佳涡轮机的配置来展示方法的效用。最后,从业者可以使用任何标准的现成混合整数编程软件轻松实现我们的方法,以评估其潮汐当前的农场项目。

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