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Singular Vector Analysis for Atmospheric Chemical Transport Models

机译:大气化学传输模型的奇异矢量分析

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摘要

The singular vectors of a chemical transport model are the directions of maximum perturbation growth over a finite time interval. They have proved useful for the estimation of error growth, the initialization of ensemble forecasts, and the optimal placement of adaptive observations. The aim of this paper is to address computational aspects of singular vector analysis for atmospheric chemical transport models. The distinguishing feature of these models is the presence of stiff chemical interactions. A projection approach to preserve the symmetry of the tangent linear-adjoint operator for stiff systems is discussed, and extended to 3D chemical transport simulations. Numerical results are presented for a simulation of atmospheric pollution in East Asia in March 2001. The singular values and the structure of the singular vectors depend on the length of the simulation interval, the meteorological data, the location of the optimization region and the selection of optimization species, the choice of error norms, and the size of the optimization region.
机译:化学传递模型的奇异矢量是有限时间间隔内最大扰动增长的方向。事实证明,它们可用于估计误差增长,总体预报的初始化以及自适应观测值的最佳位置。本文的目的是针对大气化学迁移模型解决奇异矢量分析的计算问题。这些模型的显着特征是存在刚性化学相互作用。讨论了一种为刚性系统保留正切线性伴随算子对称性的投影方法,并将其扩展到3D化学传输模拟。提出了2001年3月东亚大气污染模拟的数值结果。奇异值和奇异向量的结构取决于模拟间隔的长度,气象数据,最优化区域的位置和选择的方法。优化种类,错误准则的选择以及优化区域的大小。

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