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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >On the Formation Mechanism forWintertime Extreme Precipitation Events Over the Southeastern Tibetan Plateau
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On the Formation Mechanism forWintertime Extreme Precipitation Events Over the Southeastern Tibetan Plateau

机译:论藏高原高原东南部极端降水事件的形成机制

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摘要

The formation mechanism for wintertime extreme precipitation events over the southeastern Tibetan Plateau (SETP) is explored. The crucial step in the development of these events was the emergence of a cyclonic anomaly above the Tibetan Plateau. Wave activity fluxes along a Rossby wave train embedded in the subtropical jet stream (i.e., the circumglobal teleconnection) played the dominant role in producing this cyclonic anomaly, supported by weaker wave activity fluxes along a second Rossby wave train originating over Scandinavia. The cyclonic anomaly then moved over the SETP, favored strong updrafts, large-scale moisture convergence, and intense precipitation. Extreme precipitation was more likely to ensue when the arrival of the cyclonic anomaly was preceded by persistent warm anomalies over the SETP, which favored moisture accumulation there. Temperatures above the SETP dropped sharply around the onset of the extreme precipitation. A heat budget analysis indicates that adiabatic cooling associated with convective ascent along the downstream edge of the cyclone played a leading role in this temperature drop, while a cold air intrusion associated with an anticyclonic anomaly over western Siberia (one center of action along the second wave train) played a complementary role. An Eulerian moisture budget analysis shows that variations in precipitable water delayed the onset and enhanced the intensity of these events, with moisture for precipitation delivered to the SETP mainly through the western and southern boundaries. A companion Lagrangian moisture source analysis reveals that the land areas south of the Tibetan Plateau typically contributed 78.7% of the moisture supply for these events.
机译:探讨了东南藏高原(Setp)冬季冬季极端降水事件的形成机制。这些事件发展的关键步骤是藏高高原上方的旋风异常的出现。沿着亚热带射流(即,Circureglobal Teleconnection)嵌入的Rossby波动火车的波浪活度通量在产生该旋风异常中起显性作用,其支持沿着斯堪的纳维亚州的第二个Rossby波动火车沿着第二个Rossby波动火车的波浪活性通量支持。然后旋风异常随后移动,有利于强大的上升,大规模的水分融合和强烈的降水。当血态异常的到达之前,持续温暖异常在SetP上的到达时,更容易沉淀出来,这有利于在那里进行水分积累。在极端沉淀的开始上,Setp上方的温度急剧下降。热预算分析表明,在旋风分离器的下游边缘与对流上升相关的绝热冷却在这种温度下降中发挥了主导作用,而与西伯利亚西伯利亚的反障碍异常相关的冷空气入侵(沿着第二波的一个动作中心火车)发挥了互补的作用。欧拉湿度预算分析表明,可降水水的变化延迟了发病并增强了这些事件的强度,主要通过西南边界提供给Setp的水分。 A同伴拉格朗日的水分源分析表明,西藏高原南部的土地面积通常为这些事件的水分供应贡献了78.7%。

著录项

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  • 作者单位

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

    Ministry of Education Key Laboratory for Earth System Modeling and Department of Earth System Science (DESS) Tsinghua University Beijing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Formation Mechanism for Wintertime; Extreme Precipitation; Tibetan Plateau;

    机译:冬季的形成机制;极端降水;藏高原;

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