Ab'/> Analysis on the estimation errors of the lowest and highest astronomical tides for the southwestern 2.5?GW offshore wind farm, Korea
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Analysis on the estimation errors of the lowest and highest astronomical tides for the southwestern 2.5?GW offshore wind farm, Korea

机译:韩国西南2.5?GW海上风电场最低和最高天文潮的估计误差分析

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AbstractFor the design of wind-power facilities, the highest and lowest astronomical tides (HAT and LAT, respectively) are needed for the tidal-water levels regarding international designs; however, the approximate highest high water and approximate lowest low water AHHW and ALLW, respectively, have been used in Korea. The HAT and LAT in the wind-farm test-bed sea should be estimated to satisfy the international standard. In this study, the HAT and LAT are therefore estimated using the hourly tidal-elevation data of the Eocheongdo, Anmado, Younggwang, Gunsan, Janghang, and Seocheon tidal-gauging stations that are located in the adjacent coastal sea. The nodal variation patterns of the major lunar components, such as M2, O1, and K1are analyzed to check the expected long-term lunar cycle, i.e., 18.61 year's nodal-variation patterns. The temporal amplitude variations of the M2, O1, and K1clearly show the 18.61-years periodic patterns in the case of the no-nodal correction condition. In addition, the suggested HAT and LAT elevations, estimated as the upper and lower confidence limits of the yearly HAT and LAT elevations, are 50?cm greater than the AHHW and 40?cm lower than the ALLW, respectively.
机译: 摘要 对于风力发电设施的设计,需要最高和最低天文潮(分别是HAT和LAT)。有关国际设计的潮汐水位;但是,韩国已分别使用了大约最高的高水和最低最低的AHHW和ALLW。风电场试验台海中的HAT和LAT应该估算为满足国际标准。因此,在这项研究中,HAT和LAT是使用位于邻近沿海海域的Eocheongdo,Anmado,Younggwang,Gunsan,Janghang和Seocheon计潮站的每小时潮汐高度数据估算的。主要月球成分的节点变化模式,例如M 2 ,O 1 ,和K 1 进行分析以检查预期的长期月球周期,即18.61年的节点变化模式。 M 2 ,O 1 和K 1 在无节点校正条件下清楚地显示了18.61年的周期性模式。此外,建议的HAT和LAT高程分别估计为HATH和LAT年度高程的上下置信限,分别比AHHW高50?cm和比ALLW低40?cm。

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