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Tidal energy fluxes and dissipation on the European continental shelf

机译:欧洲大陆架上的潮汐能通量和耗散

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The spatial distribution of the energy flux, energy dissipation, current magnitude, and surface elevation amplitude of the major tidal constituents over the northwest European shelf are examined in detail. These distributions are obtained from the harmonic analysis of a 6 month three-dimensional simulation of 28 tidal constituents. The model currents are validated by a comparison of computed tidal harmonics against those derived from a harmonic analysis of up to 278 current time series. A similar comparison is performed for tidal elevations based on 257 tide gauges. Calculations show that for the most significant tidal constituents (e.g., M-2, S-2 and K-2) there is a major energy flux in the deep water along the shelf edge off the northwest of Scotland, with some energy leaking onto the shelf and into the North Sea. A second source of energy is across the shelf edge at the southern end of the Celtic Sea, with this energy flux propagating into the Irish Sea and southern North Sea, where the majority of the energy is dissipation in the shallow regions. Significantly different distributions are found for the diurnal and shallow water constituents, and the spatial distributions of energy flux and dissipation of the various constituents are considered. The accuracy of separating tidal current harmonics using model data of less than a synodic period is examined with reference to the S-2 and K-2 tide. Calculations suggest that the accuracy of computed currents comparable to those obtained from observations can be obtained from an analysis of a 60 day period compared with the synodic period for S-2 and K-2 of 182 days, a significant saving in computer time. [References: 40]
机译:详细检查了西北欧洲大陆架上主要潮汐成分的通量,能量耗散,电流大小和表面高度振幅的空间分布。这些分布是从对28个潮汐成分进行的6个月三维模拟的谐波分析中获得的。通过比较潮汐谐波与从多达278个电流时间序列的谐波分析得出的潮汐谐波,可以验证模型电流。基于257个潮汐仪对潮汐高度进行了类似的比较。计算表明,对于最重要的潮汐成分(例如,M-2,S-2和K-2),沿苏格兰西北部陆架边缘的深水中存在主要的能量通量,其中一些能量泄漏到了架子并进入北海。第二种能源来自凯尔特海南端的大陆架边缘,这种能量通量传播到爱尔兰海和北海南部,那里的大部分能量都在浅海地区消散。发现昼夜和浅水成分的分布明显不同,并且考虑了能量通量的空间分布和各种成分的耗散。参考S-2和K-2潮汐,检验了使用小于会议周期的模型数据分离潮流谐波的准确性。计算表明,与S-2和K-2的同步周期为182天相比,通过60天的分析,可以得出与通过观察获得的计算电流相当的计算电流的准确性,这大大节省了计算机时间。 [参考:40]

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