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An electrical analogy for the Pentland Firth tidal stream power resource

机译:彭特兰峡湾潮汐流发电资源的电气类比

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Several locations in the Pentland Firth, UK, have been earmarked for the deployment of separate farms of tidal turbines. However, recent numerical modelling suggests that these farms will be interdependent and that they must work together to optimize their collective performance. To explain this inter-dependence, in this paper we develop an electrical circuit analogy to describe flow through the Pentland Firth, in which parallel connections in the circuit represent different sub-channels formed by the islands of Swona, Stroma and the Pentland Skerries. The analogy is introduced in stages, beginning with turbines placed in a single channel, then turbines placed in a sub-channel connected in parallel to another sub-channel, and finally more complicated arrangements, in which turbines are installed both in parallel and in series within a multiply connected channel. The analogy leads to a general formula to predict the tidal power potential of turbines placed in a sub-channel connected in parallel to another sub-channel, and a predictive model for more complicated multiply connected channel arrangements. Power estimates made using the formula and predictive model (which may be applied using only measurements of the undisturbed natural tidal hydrodynamics) are shown to agree well with numerical model predictions for the Pentland Firth, providing useful insight into how to best develop the resource.
机译:英国Pentland Firth的多个地点已指定用于部署单独的潮汐涡轮机农场。但是,最近的数值模型表明,这些场将相互依存,它们必须一起工作以优化其集体绩效。为了解释这种相互依存关系,在本文中,我们开发了一个电路类比来描述流经Pentland峡湾的水流,其中电路中的并联连接代表了由Swona,Stroma和Pentland Skerries岛形成的不同子通道。分阶段介绍这种类比,首先将涡轮机放置在单个通道中,然后将涡轮机放置在与另一个子通道并联连接的子通道中,最后是更复杂的布置,其中将涡轮机同时安装和串联安装在多重连接的通道中。通过类推,可以得出一个通用公式,用于预测放置在与另一个子通道并联的子通道中的涡轮机的潮汐能潜力,以及用于更复杂的多重连接通道布置的预测模型。结果表明,使用公式和预测模型(仅可以使用未受干扰的自然潮汐水动力的测量结果进行估算)得出的功率估算值与Pentland峡湾的数值模型预测值非常吻合,从而为如何最佳开发资源提供了有用的见识。

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