Atmosphere teleconnections from abatement of China aerosol emissions exacerbate Northeast Pacific warm blob events

中国气溶胶减排导致的大气遥相关加剧了东北太平洋暖斑事件

Author:IMBeR IPO Date:2024-11-13 Hits:14

Authors: Hai Wang, Xiao-Tong Zheng, Wenju Cai, Zi-Wen Han, Shang-Ping Xie, Sarah M. Kang, Yu-Fan Geng, Fukai Liu, Chuan-Yang Wang, Yue Wu, Baoqiang Xiang, and Lei Zhou

Journal: PNAS


During 2010 to 2020, Northeast Pacific (NEP) sea surface temperature (SST) experienced the warmest decade ever recorded, manifested in several extreme marine heatwaves, referred to as “warm blob” events, which severely affect marine ecosystems and extreme weather along the west coast of North America. While year-to-year internal climate variability has been suggested as a cause of individual events, the causes of the continuous dramatic NEP SST warming remain elusive. Here, we show that other than the greenhouse gas (GHG) forcing, rapid aerosol abatement in China over the period likely plays an important role. Anomalous tropospheric warming induced by declining aerosols in China generated atmospheric teleconnections from East Asia to the NEP, featuring an intensified and southward-shifted Aleutian Low. The associated atmospheric circulation anomaly weakens the climatological westerlies in the NEP and warms the SST there by suppressing the evaporative cooling. The aerosol-induced mean warming of the NEP SST, along with internal climate variability and the GHG-induced warming, made the warm blob events more frequent and intense during 2010 to 2020. As anthropogenic aerosol emissions continue to decrease, there is likely to be an increase in NEP warm blob events, disproportionately large beyond the direct radiative effects.

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在2010年至2020年期间,东北太平洋的海表面温度经历了有记录以来最热的十年,发生了多次极端海洋热浪事件,也称“暖斑”事件,严重影响了海洋生态系统以及北美西海岸的极端天气。虽然年际间气候内部变率已被认为是个别事件的原因之一,但东北太平洋海表面温度增暖显著加速的原因仍未可知。除了温室气体强迫外,该研究揭示了同期中国气溶胶快速减排可能也起着重要作用。中国气溶胶减排引起的对流层异常升温激发了自东亚到东北太平洋上空的大气遥相关,使得阿留申低压增强并南移。与之相关的大气环流异常通过抑制蒸发冷却,减弱了东北太平洋的气候西风,导致该区域海表面温度升高。气溶胶减排协同温室气体强迫的暖效应引起的东北太平洋海表面温度增暖,叠加气候内部变率的影响,导致了2010年至2020年间暖斑事件的频发和增强。随着人为气溶胶排放的持续减少,东北太平洋暖斑事件可能会增加,超过直接辐射效应。

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(实习生周皓悦编译,参考来源


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