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Temporal and spatial patterns of the interannual variability of stratospheric ozone and dynamics.

机译:平流层臭氧和动力学年际变化的时空格局。

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摘要

This dissertation is a collection of empirical and modeling studies focusing on the interannual variability (IAN) of stratospheric ozone and the dynamics associated with that variability. Empirical analyses of the IAV of total column ozone in the tropics and midlatitudes are performed using the Merged Ozone Data (MOD) set. MOD combines the monthly mean column abundances collected by the Total Ozone Mapping Spectrometer and the Solar Backscatter Ultraviolet instruments, provides a nearly continuous record from late 1978 to present on a 2D grid. The first four EOFs from principal component analyses of MOD capture over 93% (82%) of the variance of the tropical (midlatitude) IAV. These analyses display structures attributable to the quasi-biennial oscillation (QBO), with influence from a decadal oscillation, an interaction between the QBO and an annual cycle (QBO-AB), and ENSO. Similar decompositions occur for dynamical fields from the NCEP/NCAR reanalysis. Using these analyses, we found possible connections between the deduced patterns in ozone and the climate variables. For comparison to the observations, a 2D chemistry and transport model (CTM) was used to simulate the ozone IAV. The NCEP/Department of Energy (DOE) Reanalysis 2 data are used to derive a monthly mean meridional circulation from 1979 to 2002 which is then used to drive the Caltech/JPL 2D CTM, allowing for an investigation of the impact of dynamics on the interannual variability (IAV) of the total column ozone for all years for which the MOD is available. The 2D CTM provides realistic simulations of the seasonal and LAY of ozone in the tropics, reasonable agreement in the NH midlatitudes but poor agreement in the SH midlatitudes. The influence of the QBO and QBO-AB are well represented in the simulation. A 71-year record of column ozone from Arosa, Switzerland is analyzed using singular spectrum analysis (SSA). The SSA decomposition separates the signals from the seasonal cycle, QBO, QBO-AB, and decadal oscillations. A 3.5-year oscillation is also discovered. A nonlinear trend is extracted and nonstationary behavior of some of the oscillations is found. Finally, a connection between fluctuations in stratospheric ozone and in tropospheric methane is observed and modeled.
机译:这篇论文是一组经验和模型研究的集合,侧重于平流层臭氧的年际变化(IAN)以及与该变化相关的动力学。使用合并的臭氧数据(MOD)集对热带和中纬度地区总柱臭氧的IAV进行了经验分析。 MOD结合了总臭氧测图仪和太阳反向散射紫外仪收集的月平均柱丰度,提供了从1978年末到2D网格的近乎连续的记录。来自MOD的主成分分析的前四个EOF捕获了热带(中纬度)IAV变异的93%(82%)以上。这些分析显示了可归因于年代际振荡,QBO和年周期之间的相互作用(QBO-AB)以及ENSO的准两年一次振荡(QBO)的结构。对于来自NCEP / NCAR重新分析的动力场,也会发生类似的分解。使用这些分析,我们发现了推论得出的臭氧模式与气候变量之间的可能联系。为了与观察结果进行比较,使用2D化学和运输模型(CTM)来模拟臭氧IAV。 NCEP /能源部(DOE)再分析2数据用于得出1979年至2002年的月平均经向环流,然后将其用于驱动Caltech / JPL 2D CTM,从而可以研究动力学对年际变化的影响可获得MOD的所有年份的总臭氧柱的变异性(IAV)。 2D CTM对热带地区的臭氧季节和LAY进行了真实的模拟,在NH中纬度地区是合理的协议,而在SH中纬度地区则是较差的协议。在模拟中很好地表示了QBO和QBO-AB的影响。使用奇异光谱分析(SSA)分析了来自瑞士阿罗萨的71年臭氧柱记录。 SSA分解将信号与季节周期,QBO,QBO-AB和年代际振荡分开。还发现了3.5年的振荡。提取非线性趋势,并发现某些振荡的非平稳行为。最后,对平流层臭氧和对流层甲烷的波动之间的联系进行了观察和建模。

著录项

  • 作者

    Camp, Charles D.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Mathematics.; Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 数学;大气科学(气象学);
  • 关键词

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