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Atmospheric short wave-long wave trough interaction with associated surface cyclone development.

机译:大气短波-长波谷相互作用与相关的表面气旋发展。

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摘要

Quasi-geostrophic and primitive equations channel models are used to study the process of a short wave trough moving through a long wave trough in mid-latitude flow. We wish to gain an understanding of how the modification of the surface cyclone associated with the short wave comes about as it moves through the long wave trough.; A zonally independent, unstable basic state simulating the mid-latitude westerly jet stream has two small amplitude perturbations superimposed upon it. These are a long wave (wave 1) and two short waves (wave 2); their structures are those of the fastest growing normal modes of the basic state, for modes possessing a wavelength equal to the channel length (wave 1) and equal to one half of the channel length (wave 2). The short waves amplify and propagate eastward more rapidly than does the long wave trough.; For each of the models, two runs are made, one with both the long wave and the two short waves present initially and the other with only the two short waves. Emphasis is placed on what occurs within vertical columns directly above the surface cyclone centers.; We find that the surface cyclone associated with the short wave trough moving through the long wave trough deepens more and for a longer time than does the surface cyclone in the short wave only run. As the short wave trough moves through the long wave trough, the westward slope of the pressure trough with height above the cyclone center is maintained or reestablished, whereas for the short wave only surface cyclone the slope becomes and remains closer to vertical. This allows lower stratospheric, positive buoyancy (warm) advection to remain strong over the cyclone centers, for the two wave runs relative to the short wave only runs, since the relative maximum buoyancy region (warm pool) just above the tropopause is in the short wave trough. The strong lower stratospheric buoyancy (warm) advection, stronger than any tropospheric advection, drives the tropospheric and surface pressure falls at the cyclone center.
机译:准地转方程和原始方程式通道模型用于研究中纬度流中短波谷穿越长波谷的过程。我们希望了解随着短波穿过长波谷时与短波有关的表面气旋如何发生变化。模拟中纬度西风急流的区域独立,不稳定基本状态具有叠加在其上的两个小振幅扰动。它们是一个长波(波1)和两个短波(波2)。它们的结构是基本状态下增长最快的正常模式的结构,对于具有等于信道长度(波1)且等于信道长度的一半(波2)的波长的模式。短波比长波波谷放大和传播得更快。对于每个模型,进行两次运行,一个运行同时包含长波和两个短波,另一个运行仅包含两个短波。重点放在表面气旋中心正上方的垂直柱内发生的情况。我们发现,与短波槽在长波槽中移动相关的表面气旋比仅在短波中运行的表面气旋加深更多且时间更长。当短波槽穿过长波槽时,压力槽的向西坡度会保持或重新建立,其高度要高于旋风中心,而对于仅短波的表面旋风,该坡度会变得并保持接近垂直方向。这使得较低的平流层,正浮力(暖)对流在旋风中心上方保持强势,因为相对于短波而言,这两个波动比短波更短,因为在对流层顶上方的相对最大浮力区(暖池)在短时间内波谷。平流层较低的强对流层(对流层)比任何对流层对流层都强,这推动了对流层和表面压力下降到旋风中心。

著录项

  • 作者

    Coskun, Mustafa.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.6123
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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