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Design optimisation and resource assessment for tidal-stream renewable energy farms using a new continuous turbine approach

机译:使用新的连续涡轮机方法对潮流可再生能源农场进行设计优化和资源评估

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This paper presents a new approach for optimising the design of tidal stream turbine farms. In this approach, the turbine farm is represented by a turbine density function that specifies the number of turbines per unit area and an associated continuous locally-enhanced bottom friction field. The farm design question is formulated as a mathematical optimisation problem constrained by the shallow water equations and solved with efficient, gradient-based optimisation methods. The resulting method is accurate, computationally efficient, allows complex installation constraints, and supports different goal quantities such as to maximise power or profit. The outputs of the optimisation are the optimal number of turbines, their location within the farm, the overall farm profit, the farm's power extraction, and the installation cost.
机译:本文提出了一种用于优化潮流涡轮机场设计的新方法。在这种方法中,涡轮机场由涡轮机密度函数表示,该函数指定每单位面积的涡轮机数量以及相关的连续局部增强的底部摩擦场。农场设计问题被公式化为受浅水方程约束的数学优化问题,并通过基于梯度的有效优化方法来解决。所产生的方法准确,计算效率高,允许复杂的安装约束,并支持不同的目标数量,例如以最大化功率或利润。优化的输出是涡轮机的最佳数量,它们在农场中的位置,农场的整体利润,农场的电力提取以及安装成本。

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