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Review of tidal characteristics of Uldolmok Strait and optimal design of blade shape for horizontal axis tidal current turbines

机译:Uldolmok海峡的潮汐特征综述及水平轴潮流涡轮机叶片形状的优化设计

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摘要

Ocean energy is a promising renewable energy resource. In particular, South Korea is a country with a large amount of tidal current energy needed for the economically and technically feasible development of a tidal current power plant. In this study, the environmental conditions including the bathymetry and tidal conditions for Uldolmok Strait and previous studies carried out in Uldolmok Strait are first briefly reviewed, and the optimal design of the blade shape and performance of an optimally designed horizontal axis rotor for a 200-kW class tidal current turbine are discussed. For the optimal blade shape design, the design code, the Horizontal Axis Rotor Performance Optimizer developed by the National Renewable Energy Laboratory in the United States, is utilized, and the performance is investigated with respect to the number of blades (two or three) and the pitch control algorithms (variable or fixed). The results indicate that a variable speed fixed pitch turbine with three blades showed the best performance. However, the performances of four alternative cases did not show significant differences. Considering the advantages in terms of maintenance, we also conducted an analysis under various rotor and cut-in speed conditions. Hence, to select the final design, it is necessary to consider the structural integrity related to fatigue, as well as the economic feasibility in manufacturing the blades.
机译:海洋能源是一种有前途的可再生能源。特别地,韩国是潮汐能发电厂在经济和技术上可行的发展所需要的大量潮汐能的国家。在这项研究中,首先简要回顾了包括乌尔多姆克海峡的测深和潮汐条件在内的环境条件,以及先前在乌尔多姆克海峡进行的研究,并且针对200-讨论了kW级的潮流涡轮机。为了获得最佳的叶片形状设计,使用了美国国家可再生能源实验室开发的设计代码“水平轴转子性能优化器”,并针对叶片数(两个或三个)和音调控制算法(可变或固定)。结果表明,具有三个叶片的变速定距涡轮机表现出最佳性能。但是,这四个替代案例的性能没有显示出显着差异。考虑到维护方面的优势,我们还在各种转子和极限转速条件下进行了分析。因此,为了选择最终设计,必须考虑与疲劳有关的结构完整性,以及制造叶片时的经济可行性。

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