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Multivariate optimization of off-grid wind turbines with variable demand - Case study of a remote commercial building

机译:需求可变的离网风力发电机的多元优化-某偏远商业建筑的案例研究

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Generally, in optimization of wind turbines, the annual energy output is set as the objective function. However, as verified in this study, maximizing the annual energy does not necessarily guarantee the optimum design for off-grid wind turbines. In such cases, the demand profile can have a significant effect on design and performance of the rotor. In this study, an off-grid wind turbine is optimized while considering the demand profile. Blade element method, genetic algorithm, and EnergyPlus (R) are applied in a coupled scheme to obtain the optimum design. Results suggest that if minimizing the annual energy deficit or fuel consumption is set as the objective function, the obtained optimum design will be different to the case in which maximizing the annual wind generated energy is set as the target. Accordingly, in the investigated case of this study, the annual wind fraction increased up to 5% by applying the proposed objective function. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通常,在风力涡轮机的优化中,将年发电量设定为目标函数。但是,正如本研究中所证实的那样,最大化年发电量并不一定能保证离网型风力涡轮机的最佳设计。在这种情况下,需求曲线会对转子的设计和性能产生重大影响。在这项研究中,在考虑需求情况的同时优化了离网型风力发电机。叶片单元法,遗传算法和EnergyPlus(R)应用于耦合方案以获得最佳设计。结果表明,如果将年度能源赤字或燃料消耗量的最小化设置为目标函数,则获得的最佳设计将不同于以年度风能发电量最大化为目标的情况。因此,在本研究的调查案例中,通过应用建议的目标函数,年风分数增加了5%。 (C)2016 Elsevier Ltd.保留所有权利。

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