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首页> 外文期刊>Journal of Climate >The Atlantic Multidecadal Variability Phase Dependence of Teleconnection between the North Atlantic Oscillation in February and the Tibetan Plateau in March
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The Atlantic Multidecadal Variability Phase Dependence of Teleconnection between the North Atlantic Oscillation in February and the Tibetan Plateau in March

机译:三月北大西洋振动与三月三兰大西洋振动与三月三月的大西洋多型多数变化相位依赖

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摘要

The Tibetan Plateau (TP), referred to as the "Asian water tower," contains one of the largest land ice masses on Earth. The local glacier shrinkage and frozen-water storage are strongly affected by variations in surface air temperature over the TP (TPSAT), especially in springtime. This study reveals that the relationship between the February North Atlantic Oscillation (NAO) and March TPSAT is unstable with time and regulated by the phase of the Atlantic multidecadal variability (AMV). The significant out-of-phase connection occurs only during the warm phase of AMV (AMV+). The results show that during the AMV+, the negative phase of the NAO persists from February to March, and is accompanied by a quasi-stationary Rossby wave train trapped along a northward-shifted subtropical westerly jet stream across Eurasia, inducing an anomalous adiabatic descent that warms the TP. However, during the cold phase of the AMV, the negative NAO cannot persist into March. The Rossby wave train propagates along the well-separated polar and subtropical westerly jets, and the NAO-TPSAT connection is broken. Further investigation suggests that the enhanced synoptic eddy and low-frequency flow (SELF) interaction over the North Atlantic in February and March during the AMV+, caused by the southward-shifted storm track, helps maintain the NAO pattern via positive eddy feedback. This study provides a new detailed perspective on the decadal variability of the North Atlantic-TP connection in late winter to early spring.
机译:被称为“亚洲水塔”的青藏高原(TP)包含着地球上最大的陆地冰块之一。TP(TPSAT)上空地表空气温度的变化对局部冰川收缩和冷冻水储存有强烈影响,尤其是在春季。这项研究表明,2月北大西洋涛动(NAO)和3月TPSAT之间的关系随时间不稳定,并受大西洋年代际变化(AMV)的相位调节。显著的异相连接仅在AMV(AMV+)的暖相期间发生。结果表明,在AMV+期间,NAO的负相位从2月持续到3月,伴随着一个准静止的Rossby波列,该波列被困在横穿欧亚大陆的向北移动的副热带西风急流上,导致异常绝热下降,使TP变暖。然而,在AMV的寒冷阶段,负NAO不能持续到3月。Rossby波列沿着分离良好的极地和副热带西风急流传播,NAO-TPSAT连接中断。进一步的研究表明,在AMV+期间,2月和3月北大西洋上空增强的天气涡和低频流(自)相互作用(由向南移动的风暴路径引起)有助于通过正涡反馈维持NAO模式。这项研究为北大西洋TP连接在冬末至早春的年代际变化提供了一个新的详细视角。

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  • 来源
    《Journal of Climate》 |2021年第11期|共16页
  • 作者单位

    Chinese Acad Sci Nanjing Inst Geog &

    Limnol Nanjing Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Minist Educ Key Lab Meteorol Disaster Nanjing Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Minist Educ Key Lab Meteorol Disaster Nanjing Peoples R China;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Minist Educ Key Lab Meteorol Disaster Nanjing Peoples R China;

    NILU Norwegian Inst Air Res Kjeller Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 气候学;
  • 关键词

    Atmosphere-ocean interaction; Eddies; Feedback; Rossby waves; Teleconnections;

    机译:大气 - 海洋互动;漩涡;反馈;rossby波;电信连接;

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