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Warm seclusion extratropical cyclones.

机译:温暖的隐生温带气旋。

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摘要

The warm seclusion or mature stage of the extratropical cyclone lifecycle often has structural characteristics reminiscent of major tropical cyclones including eye-like moats of calm air at the barotropic warm-core center surrounded by hurricane force winds along the bent-back warm front. Many extratropical cyclones experience periods of explosive intensification or deepening (bomb) as a result of nonlinear dynamical feedbacks associated with latent heat release. Considerable dynamical structure changes occur during short time periods of several hours in which lower stratospheric and upper-tropospheric origin potential vorticity combines with ephemeral lower-tropospheric, diabatically generated potential vorticity to form a coherent, upright tower circulation. At the center, anomalously warm and moist air relative to the surrounding environment is secluded and may exist for days into the future. Even with the considerable body of research conducted during the last century, many questions remain concerning the warm seclusion process. The focus of this work is on the diagnosis, climatology, and synoptic-dynamic development of the warm seclusion and surrounding flank of intense winds.;To develop a climatology of warm seclusion and explosive extratropical cyclones, current long-period reanalysis datasets are utilized along with storm tracking procedures and cyclone phase space diagnostics. Limitations of the reanalysis products are discussed with special focus on tropical cyclone diagnosis and the recent dramatic decrease in global accumulated tropical cyclone energy. A large selection of case studies is simulated with the Weather Research and Forecasting (WRF) mesoscale model using full-physics and "fake dry" adiabatic runs in order to capture the very fast warm seclusion development. Results are presented concerning the critical role of latent heat release and the combination of advective and diabatically generated potential vorticity in the generation of the coherent tower circulation characteristic of the warm seclusion. To motivate future research, issues related to predictability are discussed with focus on medium-range forecasts of varying extratropical cyclone lifecycles. Additional work is presented relating tropical cyclones and large-scale climate variability with special emphasis on the abrupt and dramatic decline in recent global tropical cyclone accumulated cyclone energy.
机译:温带气旋生命周期的温暖隔离期或成熟阶段通常具有结构特征,使人联想到主要的热带气旋,包括在正压暖心中心处像眼睛一样的平静空气护城河,周围是弯弯的暖锋围绕的飓风风。由于与潜热释放有关的非线性动力反馈,许多温带气旋经历了爆炸性强化或加深(炸弹)的时期。在数小时的短时间内,会发生相当大的动态结构变化,其中较低的平流层和对流层上的原位涡旋与短暂的较低对流层的绝热产生的势涡相结合,形成连贯的直立塔环流。在中心,相对于周围环境异常温暖潮湿的空气被隔离,并可能在未来几天内存在。即使在上个世纪进行了大量的研究,关于温暖的隐居过程仍存在许多问题。这项工作的重点是强风温暖的隐居和周围侧面的诊断,气候学和天气动态发展。;要开发温暖的隐居和爆发性温带气旋的气候,我们利用当前的长周期再分析数据集具备风暴追踪程序和气旋相空间诊断功能。讨论了再分析产品的局限性,重点是热带气旋的诊断以及最近全球热带气旋累计能量的急剧下降。使用全物理和“假干”绝热运行,使用天气研究和预报(WRF)中尺度模型对大量案例研究进行了模拟,以捕获非常快速的暖隐蔽发展。结果表明,潜热释放的关键作用以及对流和绝热产生的潜在涡度在暖隐蔽相干塔环流特征生成中的作用。为了激发未来的研究,讨论了与可预测性有关的问题,重点是对不同温带气旋生命周期的中期预测。提出了与热带气旋和大规模气候变化有关的其他工作,其中特别强调了近期全球热带气旋累积的气旋能量的急剧下降。

著录项

  • 作者

    Maue, Ryan Nicholas.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Meteorology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 284 p.
  • 总页数 284
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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