MJO 和厄尔尼诺/南方涛动遥联干扰造成的美国沿海海平面亚季节性变化

Marybeth Arcodia, Emily Becker, B. Kirtman
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引用次数: 0

摘要

气候变率会影响海平面,因为某些气候模式会加速或减缓海平面上升的趋势,但对沿 海海平面分季节变率的研究还不够。这项研究首次调查了来自 MJO 和 ENSO 的遥远热带强迫如何影响美国沿海海平面的分季节变化。在此,利用美国东西海岸六个沿海地区的验潮数据进行了综合分析,揭示了 MJO 和 ENSO 对海平面异常的影响。MJO 热带深对流产生的信号导致美国沿海海平面异常,而海平面异常随 MJO 阶段的变化而变化。此外,ENSO 对 MJO 的海平面响应和远程联系的背景状态都有调节作用。由于与厄尔尼诺/南方涛动相关的异常的建设性或破坏性干扰,东海岸的海平面异常会因 MJO 相关异常而显著增强或减弱。研究发现,西海岸异常主要由厄尔尼诺/南方涛动引起。我们研究了 MJO 和厄尔尼诺/南方涛动远缘联系影响沿岸海平面的物理机制,发现低层风和海平面气压之间的关系是一致的,而低层风和海平面气压是造成海平面变化的空间变化因素。两个案例研究揭示了 MJO 和厄尔尼诺/南方涛动遥联干扰如何在显著的沿岸洪水事件中发挥作用。人们对海平面上升的关注主要集中在与人为变暖相关的长期趋势上,但在较短的时间尺度上,我们发现亚季节性气候变异有可能加剧区域性沿海洪水的影响。
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Subseasonal Variability of U.S. Coastal Sea Level from MJO and ENSO Teleconnection Interference
Climate variability affects sea levels as certain climate modes can accelerate or decelerate the rising sea level trend, but subseasonal variability of coastal sea levels is under-explored. This study is the first to investigate how remote tropical forcing from the MJO and ENSO impact subseasonal U.S. coastal sea level variability. Here, composite analyses using tide gauge data from six coastal regions along the East and West Coasts of the U.S. reveal influences on sea level anomalies from both the MJO and ENSO. Tropical MJO deep convection forces a signal that results in U.S. coastal sea levels anomalies that vary based on MJO phase. Further, ENSO is shown to modulate both the MJO sea level response and background state of the teleconnections. The sea level anomalies can be significantly enhanced or weakened by the MJO-associated anomaly along the East Coast due to constructive or destructive interference with the ENSO-associated anomaly, respectively. The West Coast anomaly is found to be dominated by ENSO. We examine physical mechanisms by which MJO and ENSO teleconnections impact coastal sea levels and find consistent relationships between low-level winds and sea level pressure which are spatially-varying drivers of the variability. Two case studies reveal how MJO and ENSO teleconnection interference played a role in notable coastal flooding events. Much of the focus on sea level rise concerns the long-term trend associated with anthropogenic warming, but on shorter time scales, we find subseasonal climate variability has the potential to exacerbate the regional coastal flooding impacts.
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