Liu Fukai, Song Fengfei, Luo Yiyong
Frontiers Science Center for Deep Ocean Multispheres and Earth System and Physical Oceanography Laboratory, Ocean University of China, Qingdao, China.
Laoshan Laboratory, Qingdao, China.
Nat Commun. 2024 May 10;15(1):3948. doi: 10.1038/s41467-024-48381-3.
Changes in the seasonal cycle of sea surface temperature (SST) have far-reaching ecological and societal implications. Previous studies have found an intensified SST seasonal cycle under global warming, but whether such changes have emerged in historical records remains largely unknown. Here, we reveal that the SST seasonal cycle globally has intensified by 3.9 ± 1.6% in recent four decades (1983-2022), with hotspot regions such as the northern subpolar gyres experiencing an intensification of up to 10%. Increased greenhouse gases are the primary driver of this intensification, and decreased anthropogenic aerosols also contribute. These changes in anthropogenic emissions lead to shallower mixed layer depths, reducing the thermal inertia of upper ocean and enhancing the seasonality of SST. In addition, the direct impacts of increased ocean heat uptake and suppressed seasonal amplitude of surface heat flux also contribute in the North Pacific and North Atlantic. The temperature seasonal cycle is intensified not only at the ocean surface, but throughout the mixed layer. The ramifications of this intensified SST seasonal cycle extend to the seasonal variation in upper-ocean oxygenation, a critical factor for most ocean ecosystems.
海表面温度(SST)季节性周期的变化具有深远的生态和社会影响。以往的研究发现,在全球变暖的情况下,SST季节性周期有所增强,但这些变化是否出现在历史记录中仍 largely 未知。在这里,我们揭示,在最近的四十年(1983 - 2022年)里,全球SST季节性周期增强了3.9±1.6%,诸如北极亚极地环流等热点区域增强幅度高达10%。温室气体增加是这种增强的主要驱动因素,人为气溶胶减少也有贡献。这些人为排放的变化导致混合层深度变浅,降低了上层海洋的热惯性并增强了SST的季节性。此外,海洋热量吸收增加和表面热通量季节振幅受抑制的直接影响在北太平洋和北大西洋也起到了作用。温度季节性周期不仅在海洋表面增强,在整个混合层也是如此。这种增强的SST季节性周期的影响延伸到上层海洋氧合的季节性变化,这是大多数海洋生态系统的一个关键因素。