Lunar Tides and the Long-Term Variation of the Peak Latitude Anomaly of the Summer Sub-Tropical High Pressure Ridge over Eastern Australia

I. Wilson
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引用次数: 8

Abstract

This study looks for evidence of a correlation between long-term changes in the lunar tidal forces and the inter- annual to decadal variability of the peak latitude anomaly of the summer (DJF) subtropical high pressure ridge over Eastern Australia (LSA) between 1860 and 2010. A simple "resonance" model is proposed that assumes that if lunar tides play a role in influencing LSA, it is most likely one where the tidal forces act in "resonance" with the changes caused by the far more dominant solar-driven seasonal cycles. With this type of model, it is not so much in what years do the lunar tides reach their maximum strength, but whether or not there are peaks in the strength of the lunar tides that re-occur at the same time within the annual seasonal cycle. The "resonance" model predicts that if the seasonal peak lunar tides have a measurable effect upon LSA then there should be significant oscillatory signals in LSA that vary in-phase with the 9.31 year draconic spring tides, the 8.85 year perigean spring tides, and the 3.80 year peak spring tides. This study identifies significant peaks in the spectrum of LSA at 9.4 (+0.4/� 0.3) and 3.78 (± 0.06) tropical years. In addition, it shows that the 9.4 year signal is in-phase with the draconic spring tidal cycle, while the phase of the 3.8 year signal is retarded by one year compared to the 3.8 year peak spring tidal cycle. Thus, this paper supports the conclusion that long-term changes in the lunar tides, in combination with the more dominant solar-driven seasonal cycles, play an important role in determining the observed inter-annual to decadal variations of LSA.
月潮与东澳大利亚夏季副热带高压脊峰度异常的长期变化
本文研究了1860 - 2010年间月潮力的长期变化与东澳大利亚夏季副热带高压脊(LSA)峰纬距平的年际-年代际变化之间的相关性。提出了一个简单的“共振”模型,假设如果月球潮汐在影响LSA中起作用,那么很可能是潮汐力与更主要的太阳驱动的季节周期引起的变化“共振”。在这种模式下,问题不在于月球潮汐在哪一年达到最大强度,而在于在每年的季节周期内,月球潮汐的强度是否在同一时间再次出现峰值。“共振”模式预测,如果季节性月潮高峰对LSA有可测量的影响,那么LSA应该存在显著的振荡信号,与9.31年的龙年春潮、8.85年的远海春潮和3.80年的春潮高峰同相变化。本研究在9.4(+0.4/±0.3)和3.78(±0.06)回归年发现了LSA光谱的显著峰。此外,9.4年信号与龙春季潮周期同相,3.8年信号与3.8年高峰春季潮周期相延迟1年。因此,本文支持这样的结论,即月球潮汐的长期变化,结合更主要的太阳驱动的季节周期,在确定观测到的LSA年际到年代际变化中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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