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Spectral Quantification of Nonlinear Behaviour of the Nearshore Seabed and Correlations with Potential Forcings at Duck, N.C., U.S.A

机译:美国北卡罗来纳州近海海床非线性行为的光谱定量及其与潜在强迫的关系

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摘要

Local bathymetric, quasi-periodic patterns of oscillation are identified from 26 years of monthly profile surveys taken at two shore-perpendicular transects at Duck, North Carolina, USA. The data cover both the swash and surf zones. Singular Spectrum Analysis (SSA) and Multi-channel Singular Spectrum analysis (MSSA) methods are applied, on the shoreface, to three potential forcings: the monthly wave heights, the monthly mean water levels and the large scale atmospheric index known as the North Atlantic Oscillation. The patterns within these forcings are compared to the local bathymetric patterns; it is found that the patterns extracted using SSA and MSSA agree well with previous patterns identified using wavelets and confirm the highly non-stationary behaviour of beach levels at Duck. This is followed by analysis of potential correlations between the local bathymetry (at the two transects) and hydrodynamic and atmospheric patterns. The study is then extended to all measured bathymetric profiles, covering an area of 1100 m (alongshore) by 440 m (cross-shore). MSSA showed no collective inter-annual patterns of oscillations present in the bathymetry and the three potential forcings. Annual and semi-annual cycles within the bathymetry are found to be strongly correlated with the monthly wave height, in agreement with the SSA findings. Other collective intra-annual cycles besides the semi-annual were identified; they were all correlated with the North Atlantic Oscillation.
机译:从在美国北卡罗来纳州达克市的两个垂直海岸断面进行的26年月度剖面调查中,可以确定出局部的测深,准周期振荡模式。数据涵盖了急流区和冲浪区。在岸上,奇异频谱分析(SSA)和多通道奇异频谱分析(MSSA)方法应用于三个潜在强迫:月波高,月平均水位和被称为北大西洋的大规模大气指数振荡。将这些强迫中的模式与本地测深模式进行比较;结果发现,使用SSA和MSSA提取的模式与先前使用小波识别的模式非常吻合,并确认了Duck沙滩高度高度的不稳定行为。接下来是分析局部测深法(在两个样带处)与水动力和大气模式之间的潜在相关性。然后将研究扩展到所有测得的测深剖面,覆盖面积1100 m(沿岸)乘以440 m(跨岸)。 MSSA没有显示出在测深法和三个潜在强迫中出现的集体年际振荡模式。根据SSA的发现,测深仪中的年度和半年周期与月波高高度相关。确定了除半年度外的其他集体年内循环;它们都与北大西洋涛动有关。

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