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The influence of sampling frequency, non-linear interaction, and frictional effects upon the accuracy of the harmonic analysis of tidal simulations

机译:采样频率,非线性相互作用和摩擦效应对潮汐模拟谐波分析精度的影响

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A two dimensional tidal model of the northwest European shelf is used to examine the influence of sampling rate, number of harmonic constituents analysed for, and length of data upon the accuracy of tidal constituents. Calculations show that in shallow water, where non-linear interactions give rise to higher harmonics, an accurate analysis can be obtained from a short span of data provided the higher harmonics are included in the analysis. In very shallow water where the tidal range is comparable to the water depth, asymmetry in the tidal signal due to substantial differences in friction at times of high and low water produces a number of semi-diurnal constituents in particular v{sub}2 and L{sub}2 that must be included in the harmonic analysis. When these constituents together with the "classical" shallow water constituents are used in the harmonic analysis then an accurate analysis can be performed on a short span of data. The significant saving in computer time, particularly for a fine grid three dimensional model of using frequent sampling and analysing for a full set of constituents is stressed.
机译:西北欧大陆架的二维潮汐模型用于检查采样率,所分析的谐波分量的数量以及数据长度对潮汐分量准确性的影响。计算表明,在浅水区,非线性相互作用会引起较高的谐波,只要分析中包含较高的谐波,就可以从一小段数据中获得准确的分析结果。在潮汐范围与水深相当的非常浅的水中,潮汐信号的不对称性是由于在高水位和低水位时摩擦力的显着差异而产生的,尤其是v {sub} 2和L {sub} 2必须包含在谐波分析中。当这些成分与“经典的”浅水成分一起用于谐波分析时,则可以对一小段数据进行准确的分析。强调显着节省计算机时间,特别是对于使用频繁采样和分析全套成分的精细网格三维模型而言。

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