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Coupling of sea level and tidal range changes, with implications for future water levels

机译:海平面和潮汐变化的耦合,对未来水位有影响

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摘要

Are perturbations to ocean tides correlated with changing sea-level and climate, and how will this affect high water levels? Here, we survey 152 tide gauges in the Pacific Ocean and South China Sea and statistically evaluate how the sum of the four largest tidal constituents, a proxy for the highest astronomical tide (HAT), changes over seasonal and interannual time scales. We find that the variability in HAT is significantly correlated with sea-level variability; approximately 35% of stations exhibit a greater than ±50?mm tidal change per meter sea-level fluctuation. Focusing on a subset of three stations with long records, probability density function (PDF) analyses of the 95% percentile exceedance of total sea level (TSL) show long-term changes of this high-water metric. At Hong Kong, the increase in tides significantly amplifies the risk caused by sea-level rise. Regions of tidal decrease and/or amplification highlight the non-linear response to sea-level variations, with the potential to amplify or mitigate against the increased flood risk caused by sea-level rise. Overall, our analysis suggests that in many regions, local flood level determinations should consider the joint effects of non-stationary tides and mean sea level (MSL) at multiple time scales.
机译:海洋潮汐的扰动是否与不断变化的海平面和气候相关联,这将如何影响高水位?在这里,我们对太平洋和南中国海的152个潮汐仪进行了调查,并通过统计方法评估了四个最大潮汐成分之和(代表最高天文潮汐(HAT))在季节和年度际尺度上的变化。我们发现,HAT的可变性与海平面的可变性显着相关。每米海平面波动约有35%的台站潮汐变化大于±50?mm。着眼于三个具有悠久记录的站点的子集,对总海平面(TSL)超过95%百分位数的概率密度函数(PDF)分析显示了该高水位指标的长期变化。在香港,潮汐上升大大放大了海平面上升带来的风险。潮汐减小和/或放大区域突出了对海平面变化的非线性响应,并有可能放大或减轻由海平面上升引起的洪水风险的增加。总体而言,我们的分析表明,在许多地区,当地的洪水位确定应考虑非平稳潮汐和多个时间尺度上的平均海平面(MSL)的共同影响。

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