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Twentieth-century atmospheric river activity along the west coasts of Europe and North America: algorithm formulation, reanalysis uncertainty and links to atmospheric circulation patterns

机译:欧洲和北美西海岸的20世纪大气河流活动:算法公式,重新分析的不确定性以及与大气环流模式的联系

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A new atmospheric-river detection and tracking scheme based on the magnitude and direction of integrated water vapour transport is presented and applied separately over 13 regions located along the west coasts of Europe (including North Africa) and North America. Four distinct reanalyses are considered, two of which cover the entire twentieth-century: NOAA-CIRES Twentieth Century Reanalysis v2 (NOAA-20C) and ECMWF ERA-20C. Calculations are done separately for the OND and JFM-season and, for comparison with previous studies, for the ONDJFM-season as a whole. Comparing the AR-counts from NOAA-20C and ERA-20C with a running 31-year window looping through 1900-2010 reveals differences in the climatological mean and inter-annual variability which, at the start of the twentieth-century, are much more pronounced in western North America than in Europe. Correlating European AR-counts with the North Atlantic Oscillation (NAO) reveals a pattern reminiscent of the well-know precipitation dipole which is stable throughout the entire century. A similar analysis linking western North American AR-counts to the North Pacific index (NPI) is hampered by the aforementioned poor reanalysis agreement at the start of the century. During the second half of the twentieth-century, the strength of the NPI-link considerably varies with time in British Columbia and the Gulf of Alaska. Considering the period 19502010, AR-counts are then associated with other relevant large-scale circulation indices such as the East Atlantic, Scandinavian, Pacific-North American and West Pacific patterns (EA, SCAND, PNA and WP). Along the Atlantic coastline of the Iberian Peninsula and France, the EA-link is stronger than the NAO-link if the OND season is considered and the SCAND-link found in northern Europe is significant during both seasons. Along the west coast of North America, teleconnections are generally stronger during JFM in which case the NPI-link is significant in any of the five considered subregions, the PNA-link is significant in British Columbia and the Gulf of Alaska and the WP-link is so along the U. S. West Coast. During OND, these links are significant in the Gulf of Alaska only. If AR-counts are calculated upon persistent (instead of instantaneous) ARs, the link to the NAO weakens over the British Isles and western Iberia. For the experimental set-ups most closely mirroring those applied in Lavers et al. (J Geophys Res Atmos 117, 2012. doi: 10.1029/2012JD018027) and Ramos et al. (J Hydrometeorol 16(2): 579-597, 2015. doi: 10.1175/JHM-D-140103.1), the NAO-links are completely or partly insignificant indicating that the inclusion of the persistence criterion notably alters the results. Visual support for the present study is provided by an exhaustive historical atmospheric river archive built at http://www. meteo. unican. es/atmospheric-rivers.
机译:提出了一种基于综合水汽输送的大小和方向的新的大气河道探测和跟踪方案,并将其分别应用在欧洲西海岸(包括北非)和北美的13个地区。考虑了四个不同的重新分析,其中两个覆盖了整个20世纪:NOAA-CIRES二十世纪重新分析v2(NOAA-20C)和ECMWF ERA-20C。分别针对OND和JFM季节进行了计算,并与以前的研究进行了比较,对整个ONDJFM季节进行了计算。将NOAA-20C和ERA-20C的AR值与1900年至2010年连续运行31年的窗口进行比较,发现气候平均值和年际变化的差异在20世纪初更为明显。在北美西部比在欧洲更明显。将欧洲AR计数与北大西洋涛动(NAO)进行关联,可以发现一种模式,使人联想到众所周知的降水偶极子,该偶极子在整个世纪都稳定。在本世纪初,上述不良的再分析协议阻碍了将北美西部AR计数与北太平洋指数(NPI)联系起来的类似分析。在20世纪下半叶,不列颠哥伦比亚省和阿拉斯加湾的NPI链接强度随着时间变化很大。考虑到19502010年,AR计数随后与其他相关的大规模流通指数相关联,例如东大西洋,斯堪的纳维亚,太平洋北美和西太平洋模式(EA,SCAND,PNA和WP)。沿伊比利亚半岛和法国的大西洋海岸线,如果考虑到OND季节,则EA-link比NAO-Link强,而在北欧,在两个季节中发现的SCAND-link都很重要。在北美西海岸,JFM期间的远程连接通常更强,在这种情况下,NPI链接在所考虑的五个子区域中的任何一个都非常重要,PNA链接在不列颠哥伦比亚省和阿拉斯加湾以及WP链接中都很重要美国西海岸也是如此。在OND期间,这些链接仅在阿拉斯加湾具有重要意义。如果按永久性(而不是瞬时)AR计算AR计数,则在不列颠诸岛和西伊比利亚西部,与NAO的联系会减弱。对于实验设置,最紧密地反映了Lavers等人的应用。 (J Geophys Res Atmos 117,2012. doi:10.1029 / 2012JD018027)和Ramos等人。 (J Hydrometeorol 16(2):579-597,2015. doi:10.1175 / JHM-D-140103.1),NAO链接完全或部分不重要,表明包含持久性标准会明显改变结果。本研究的视觉支持由http:// www建立的详尽的历史大气河流档案库提供。气象unican。 es / atmospheric-rivers。

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