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Low-frequency variability of the zonal mean circulation induced by sea surface temperature variation and eddy feedback.

机译:海面温度变化和涡流反馈引起的纬向平均环流的低频变化。

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摘要

This study is an investigation of the dynamics of the variabilities of the zonal mean atmospheric circulation induced by the variation of the sea surface temperature (SST) and by the nonlinear interaction between unstable baroclinic waves and the zonal mean flow.; The influence of SST is investigated with a zonally-symmetric model. A simple parameterization is used to describe the tropical condensational heating as a function of SST and the large-scale circulation. When forced by a time-dependent SST with an idealized annual cycle, the time-dependent model circulation shows a large difference in response time between the Hadley cell and the subtropical jet. While the Hadley cell quickly adjusts to the change of SST, the response of the subtropical jet lags the Hadley cell by nearly two months. This lag is a combined effect of the acceleration by the poleward angular momentum transport of the Hadley cell and the deceleration by the sub-grid scale diffusion and the downward momentum transport by the Hadley cell. The interannual variability of the Hadley circulation is simulated with the observed zonal mean SST from 1949 to 1992. Composite analysis of the model circulation shows pronounced intensification of the Hadley cell and the subtropical jet during El Nino (warm) years and vice versa in La Nina (cold) years. The anomaly of the subtropical jet extends over a much longer time period than the Hadley cell, and resembles the observed zonal wind anomaly during the 1982/83 El Nino. It suggests that the subtropical zonal wind anomaly is largely induced by the tropical SST anomaly.; The dynamics of wave-mean flow interaction is investigated with a three-dimensional, global primitive-equation model forced by a zonally-symmetric heating, in a sequence of experiments with progressively more complex versions of the model. The first version allows only a single zonal wave interacting with the zonal mean flow. The modification to the zonal mean flow is found to be largely determined by the linear normal mode structure of the wave. A quasi-periodic oscillation with period of 80 days in the interaction with wavenumber 3 resembles the "zonal index cycle". In a more complex version where a wave triad (wavenumbers 3, 6 and 9) is allowed to interact with the zonal mean flow, the variability of the zonal mean flow is irregular, and is characterized by a low-frequency oscillation with period of about two months. It is revealed that the wave-mean flow interaction is the primary mechanism in generating the low-frequency oscillation in the zonal mean flow. The wave-wave interaction is secondary. This is further verified in an experiment with a full wave spectrum. The low-frequency oscillation in this experiment is qualitatively similar to that in the wave triad experiment. EOF analyses reveal an oscillating pattern in the zonal mean zonal wind similar to the observed "zonal index cycle", and also suggest that the "zonal index cycle" is primarily driven by the eddy forcing.
机译:这项研究是对由海面温度(SST)的变化以及不稳定斜压波与纬向平均流量之间的非线性相互作用引起的纬向平均大气环流变化的动力学研究。用区域对称模型研究了SST的影响。一个简单的参数化被用来描述热带冷凝水加热与海表温度和大规模环流的关系。当由具有理想的年周期的时间相关的SST强迫时,时间相关的模型循环显示Hadley单元与亚热带喷气机之间的响应时间差异很大。当Hadley电池快速适应SST的变化时,副热带急流的响应比Hadley电池滞后了将近两个月。这种滞后是Hadley单元的极向角动量传输的加速度与子网格规模扩散的减速和Hadley单元的向下动量传输的综合效果。利用观测到的1949年至1992年的纬向平均海温,模拟了Hadley环流的年际变化。对模型环流的综合分析表明,在El Nino(暖)年期间,Hadley细胞和副热带高压急增,反之亦然。 (冷)年。与Hadley单元相比,副热带急流的异常期要长得多,类似于1982/83年厄尔尼诺现象所观测到的纬向风异常。这表明亚热带纬向风异常主要是由热带海温异常引起的。在由区域对称加热强迫产生的三维全局原始方程组模型中,研究了波均值流动相互作用的动力学,并进行了一系列逐步复杂的实验。第一个版本仅允许单个纬向波与纬向平均流相互作用。发现对区域平均流量的修改很大程度上取决于波浪的线性法线模式结构。在与波数3的相互作用中,周期为80天的准周期振荡类似于“区域指数周期”。在一个更复杂的版本中,允许三元组(波数3、6和9)与纬向平均流相互作用,纬向平均流的变化是不规则的,其特征是低频振荡的周期约为两个月结果表明,波均流相互作用是在区域平均流中产生低频振荡的主要机制。波波相互作用是次要的。这在全波谱实验中得到了进一步验证。该实验中的低频振荡在质量上与波动三重轴实验中的类似。 EOF分析揭示了纬向平均纬向风中的振荡模式,类似于观察到的“纬向指数周期”,并且还表明“纬向指数周期”主要由涡旋强迫驱动。

著录项

  • 作者

    Liu, Zhuangren.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Physics Atmospheric Science.; Geophysics.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);地球物理学;机械、仪表工业;
  • 关键词

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