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Multi-dimensional optimisation of Tidal Energy Converters array layouts considering geometric, economic and environmental constraints

机译:考虑几何,经济和环境限制的潮汐能转换器阵列布局的多维优化

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A study for the optimisation of in-stream tidal energy converter array layout for a three-dimensional fluid flow field is presented. The study involves design of experiments, computational fluid dynamics simulations, surrogate model construction, and constrained optimisation. Linear Radial Basis Functions (RBF) are used to build surrogate models as a function of four design variables: streamwise, spanwise, vertical and staggered spacings, with the purpose of approximating the capacity factor of an array with a fixed number of Tidal Energy Converters (TECs). Effects of arrays on maximum and minimum stream velocities at specific locations are also assessed. A constrained optimisation mathematical model is formulated considering geometric, economic and environmental aspects. Results are presented in terms of economic revenue for each optimisation model. The method proves to be very time efficient in the evaluation of numerous tidal energy convert array layouts with a view to satisfying optimality criteria. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了针对三维流体流场的流内潮汐能换能器阵列布局优化的研究。该研究涉及实验设计,计算流体动力学模拟,替代模型构建和约束优化。线性径向基函数(RBF)用于构建替代模型,该模型是四个设计变量的函数:流向,展向,垂直和交错间距,目的是通过固定数量的潮汐能转换器近似计算阵列的容量因子( TECs)。还评估了阵列对特定位置的最大和最小流速的影响。考虑几何,经济和环境方面,制定了约束优化数学模型。结果以每种优化模型的经济收入表示。为了满足最优性标准,该方法在评估多种潮能转换阵列布局方面非常省时。 (C)2017 Elsevier Ltd.保留所有权利。

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