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A Metric Space with LCOE Isolines for Research Guidance in wind and hydrokinetic energy systems

机译:具有LCOE等值线的度量空间,用于风能和水动能系统的研究指导

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摘要

This paper introduces a new Metric Space to guide the design of advanced wind energy systems and hydrokinetic energy converters such as tidal, ocean current and riverine turbines. The Metric Space can analyse farms that combine different or identical turbines and stand-alone turbines. The first metric (M1) of the space considers the efficiency of the turbines in the farm, which is also proportional to the specific power per swept area at a given wind/water velocity (W/m(2)). The second metric (M2) describes the specific rotor area per unit of mass of the turbines (m(2)/kg). Both metrics depend on the primary design characteristics of the turbines, such as swept area, system size and mass, materials and efficiency, and are independent at first from external characteristics, such as atmospheric and ocean site conditions, cost of materials and economic factors. Combining both metrics, and for a given set of external characteristics, the resulting Metric Space M2/M1 displays the Levelized Cost of Energy (LCOE) standards as isolines. This graphical representation provides a quick understanding of the cost and state of the technology. It also offers a practical guidance to choose the research tasks and strategy to design advanced wind and hydrokinetic energy systems. The paper applies the new Metric Space to several case studies, including large and small onshore wind turbines, floating and bottom-fixed offshore wind turbines, downwind rotors, multi-rotor and hybrid systems, airborne wind energy systems, wind farms and tidal energy converters.
机译:本文介绍了一个新的度量空间,以指导先进的风能系统和潮汐能,洋流和河流涡轮机等动能换能器的设计。公制空间可以分析将不同或相同的涡轮机和独立涡轮机组合在一起的服务器场。该空间的第一个度量(M1)考虑了农场中涡轮机的效率,这也与给定风/水速度(W / m(2))下每个扫掠区域的比功率成正比。第二个度量标准(M2)描述了每质量单位涡轮的比转子面积(m(2)/ kg)。这两个指标都取决于涡轮的主要设计特征,例如扫掠面积,系统大小和质量,材料和效率,并且首先与外部特征(例如大气和海洋工况,材料成本和经济因素)无关。结合度量标准和给定的一组外部特征,生成的度量空间M2 / M1将等能量线成本(LCOE)标准显示为等值线。这种图形表示形式使您可以快速了解技术的成本和状态。它还为选择研究任务和策略以设计先进的风能和水动力能源系统提供了实用指南。本文将新的公制空间应用于几个案例研究,包括大型和小型陆上风力涡轮机,浮动和底部固定的海上风力涡轮机,顺风转子,多转子和混合系统,机载风能系统,风电场和潮汐能转换器。

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