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Atmospheric Rivers over the Northwestern Pacific: Climatology and Interannual Variability

机译:西北太平洋的大气河流:气候学和年际变化

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摘要

Atmospheric rivers (ARs), conduits of intense water vapor transport in the midlatitudes, are critically important for water resources and heavy rainfall events over the west coast of North America, Europe, and Africa. ARs are also frequently observed over the northwestern Pacific (NWP) during boreal summer but have not been studied comprehensively. Here the climatology, seasonal variation, interannual variability, and predictability of NWP ARs (NWPARs) are examined by using a large ensemble, high-resolution atmospheric general circulation model (AGCM) simulation and a global atmospheric reanalysis. The AGCM captures general characteristics of climatology and variability compared to the reanalysis, suggesting a strong sea surface temperature (SST) effect on NWPARs. The summertime NWPAR occurrences are tightly related to El Niño–Southern Oscillation (ENSO) in the preceding winter through Indo–western Pacific Ocean capacitor (IPOC) effects. An enhanced East Asian summer monsoon and a low-level anticyclonic anomaly over the tropical western North Pacific in the post–El Niño summer reinforce low-level water vapor transport from the tropics with increased occurrence of NWPARs. The strong coupling with ENSO and IPOC indicates a high predictability of anomalous summertime NWPAR activity.
机译:大气河(ARs)是中纬度强烈的水蒸气输送管道,对于北美,欧洲和非洲西海岸的水资源和强降雨事件至关重要。在北方夏季,也经常在西北太平洋(NWP)上观测到AR,但尚未进行全面研究。在这里,通过使用大型整体高分辨率高分辨率大气总环流模型(AGCM)模拟和全球大气再分析,研究了NWP ARs(NWPARs)的气候,季节变化,年际变化和可预测性。与重新分析相比,AGCM捕获了气候学和变异性的一般特征,表明对NWPAR的海面温度(SST)强烈。夏季NWPAR的发生与前一个冬季的厄尔尼诺—南方涛动(ENSO)密切相关,这是由于印度洋—西太平洋洋洋电容器(IPOC)的作用。厄尔尼诺事件后的夏季,东亚夏季风增强和北太平洋热带西部的低空反气旋异常增强了来自热带的低水平水汽输送,并增加了非水PAR的发生。与ENSO和IPOC的强耦合表明夏季NWPAR异常活动的高度可预测性。

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