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Analysis of longer period variation of the Kuroshio Current intrusion into the Luzon Strait using rectified wavelet power spectra

机译:整流小波功率谱分析黑潮侵入吕宋海峡的长期变化

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Longer period variation of the Kuroshio into the Luzon Strait (LS) was identified using acoustic Doppler current profiler (ADCP) observations as well as pressure and temperature time series data recorded by two TDs (manufactured by the RBR Ltd.) at mooring station N2 (20 degrees 40.441'N, 120 degrees 38.324'E). The ADCP was deployed at depths of 50-300 m between July 7, 2009 and April 10, 2011, and the TDs at around 340 and 365 m between July 9, 2009 and July 9, 2011. Observations provide strong evidence of longer period variation of the Kuroshio into the LS using the Vector rotary spectra (VRS) and Rectified wavelet power spectra analysis (RWPSA). RWPSA of the observations allowed the identification of two types of dominant periods. The first type, with the strongest power spectral density (PSD), had a dominant period of 112 d and was found throughout the upper 300 m. For example, the maximum PSD for western and northern velocity components time series were 3800 and 3550 at 50 m, respectively. The maximum power spectral density decrease with deeper depths, i.e., the depth dependence of maximum PSD. The 112 d period was also identified in the pressure and temperature time series data, at 340 m and 365 m. Combined RWPSA with VRS and mechanism analysis, it is clear that the occurrence of the most dominant period of 112 d in the upper 300 m is related to the clockwise meandering of the Kuroshio into the LS, which is caused by westward propagating stronger anticyclonic eddies from the interior ocean due to the interaction of Rossby eddies with the Kuroshio. The second type of dominant period, for example a 40 d period, is related to the anticlockwise meandering of the Kuroshio. The final dominant period of 14 d coincides with the fortnightly spring-neap tidal period. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用声学多普勒电流剖面仪(ADCP)观测以及由两个TD(由RBR Ltd.制造)在N2系泊站记录的压力和温度时间序列数据,确定了黑潮进入吕宋海峡(LS)的较长时间变化。 20度40.441'N,120度38.324'E)。 ADCP在2009年7月7日至2011年4月10日之间的深度为50-300 m,而TD在2009年7月9日至2011年7月9日之间的深度为340和365 m。观测结果提供了较长时期变化的有力证据使用矢量旋转光谱(VRS)和整流小波功率谱分析(RWPSA)将黑潮进入LS。观测值的RWPSA允许确定两种主要时期。第一类具有最强的功率谱密度(PSD),主周期为112 d,遍布整个上部300 m。例如,西部和北部速度分量时间序列在50 m处的最大PSD分别为3800和3550。最大功率谱密度随着更深的深度而减小,即最大PSD的深度依赖性。在压力和温度时间序列数据中也确定了112 d的时间段,分别为340 m和365 m。将RWPSA与VRS结合并进行机理分析,可以清楚地看出,在300 m的上部最主要的112 d的发生与黑潮向顺时针蜿蜒进入LS有关,这是由于向西传播更强的反气旋涡而引起的。罗斯比涡流与黑潮的相互作用导致了内部海洋的发展。第二种主导时期,例如40 d时期,与黑潮的逆时针蜿蜒有关。最后的优势期14 d与每两周的春季潮汐潮期相吻合。 (C)2017 Elsevier Ltd.保留所有权利。

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