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首页> 外文期刊>Journal of Climate >Enhanced Climate Change Response of Wintertime North Atlantic Circulation, Cyclonic Activity, and Precipitation in a 25-km-Resolution Global Atmospheric Model
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Enhanced Climate Change Response of Wintertime North Atlantic Circulation, Cyclonic Activity, and Precipitation in a 25-km-Resolution Global Atmospheric Model

机译:在25公里分辨率的全球大气模型中增强了冬季北大西洋循环,旋风活动和降水的气候变化响应

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Wintertime midlatitude cyclone activity and precipitation are projected to increase across northern Europe and decrease over southern Europe, particularly over the western Mediterranean. Greater confidence in these regional projections may be established by their replication in state-of-the-art, high-resolution global climate models that resolve synoptic-scale dynamics. We evaluated the representation of the wintertime eddy-driven and subtropical jet streams, extratropical cyclone activity, and precipitation across the North Atlantic and Europe under historical (1985-2011) and RCP8.5 sea surface temperature forcing in an ensemble of atmosphere-only HadGEM3-GA3.0 simulations, where horizontal atmospheric resolution is increased from 135 to 25 km. Under RCP8.5, increased (decreased) frequency of northern (southern) eddy-driven jet occurrences and a basinwide poleward shift in the upper-level westerly flow are simulated. Increasing atmospheric resolution significantly enhances these climate change responses. At 25-km resolution, these enhanced changes in large-scale circulation amplify increases (decreases) in extratropical cyclone track density and mean intensity across the northern (southern) Euro-Atlantic region under RCP8.5. These synoptic changes with resolution impact the overall climate change response of mean and heavy winter precipitation: wetter (drier) conditions in northern (southern) Europe are also amplified at 25-km resolution. For example, the reduction in heavy precipitation simulated over the Iberian Peninsula under RCP8.5 is similar to 15% at 135 km but similar to 30% at 25-km resolution. Conversely, a shift to more frequent high extratropical cyclone (ETC)-associated precipitation rates is simulated over Scandinavia under RCP8.5, which is enhanced at 25 km. This study provides evidence that global atmospheric resolution may be a crucial consideration in European winter climate change projections.
机译:冬季冬季冬季冬季冬季冬季冬季增长,南欧南欧,特别是在西部地中海。对这些区域预测的更大信心可以通过他们在最先进的全球气候模型中的复制来确定,解决概要动态。在历史(1985 - 2011年)和RCP8.5海面温度强制在唯一的大气的Hadgem3的集合中,我们评估了冬季大西洋和欧洲的冬季和亚热带射流,潜水旋风活性和欧洲沉淀的代表性。 -GA3.0模拟,水平大气分辨率从135增加到25公里。在RCP8.5下,模拟了北部北部(南部)涡流喷射发生的频率(减少)频率和在上层西方流程中的媒介围绕围绕的向上移动。增加大气分辨率显着增强了这些气候变化的反应。在25公里的分辨率下,大规模循环的这些增强的变化放大了在RCP8.5下北部(南部)欧洲大西洋地区的越野旋风轨道密度和平均强度的增加(降低)。这些概要变化与分辨率影响影响平均值和冬季降水的总体气候变化响应:北部(南部)欧洲的潮湿(干燥机)条件也在25公里的分辨率下扩增。例如,在RCP8.5下的Iberian半岛模拟的重度降水的降低类似于15%,但在25 km的分辨率下类似于30%。相反,在RCP8.5下的Scandinavia下模拟了向更频繁的高潜水旋风分离(ETC)的转变为rcp8.5,其在25公里处增强。本研究规定了全球大气分辨率可能是欧洲冬季气候变化预测的重要考虑因素。

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