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Low-order dynamical behavior in the martian atmosphere: Diagnosis of general circulation model results

机译:火星大气中的低阶动力学行为:一般环流模型结果的诊断

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摘要

The hypothesis of a low dimensional martian climate attractor is investigated by the application of the proper orthogonal decomposition (POD) to a simulation of martian atmospheric circulation using the UK Mars general circulation model (UK-MGCM). In this article we focus on a time series of the interval between autumn and winter in the northern hemisphere, when baroclinic activity is intense. The POD is a statistical technique that allows the attribution of total energy (TE) to particular structures embedded in the UK-MGCM time-evolving circulation. These structures are called empirical orthogonal functions (EOFs). Ordering the EOFs according to their associated energy content, we were able to determine the necessary number to account for a chosen amount of atmospheric TE. We show that for Mars a large fraction of TE is explained by just a few EOFs (with 90% TE in 23 EOFs), which apparently support the initial hypothesis. We also show that the resulting EOFs represent classical types of atmospheric motion, such as thermal tides and transient waves. Thus, POD is shown to be an efficient method for the identification of different classes of atmospheric modes. It also provides insight into the non-linear interaction of these modes.
机译:通过使用英国火星通用环流模型(UK-MGCM),将适当的正交分解(POD)应用于火星大气环流的模拟,研究了低维火星气候吸引子的假设。在本文中,我们重点关注北半球秋季和冬季的斜压活动强烈的时间序列。 POD是一种统计技术,可以将总能量(TE)归因于UK-MGCM随时间演变的环流中嵌入的特定结构。这些结构称为经验正交函数(EOF)。根据EOF的相关能量含量对其进行排序,我们能够确定必要的数量以说明选定数量的大气TE。我们表明,对于火星来说,大部分TE只能由少数几个EOF来解释(23个EOF中有90%的TE),这显然支持了最初的假设。我们还表明,所得的EOF代表了经典的大气运动类型,例如热潮和瞬变波。因此,POD被证明是一种用于识别不同类别的大气模式的有效方法。它还提供了对这些模式的非线性交互的了解。

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