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Inversion of the western Pacific subtropical high dynamic model and analysis of dynamic characteristics for its abnormality

机译:西太平洋副热带高压动力学模型的反演及其异常动力学特征分析

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摘要

Based on time series data of 500 hPa potential field from NCEP/NCAR (National Center for Environmental Forecast of American/National Center for Atmospheric Research), a novel consideration of empirical orthogonal function (EOF) time-space separation and dynamic system reconstruction for time series is introduced. This method consists of two parts: first, the dynamical model inversion and model parameter optimization are carried out on the EOF time coefficient series using the genetic algorithm (GA), and, second, a nonlinear dynamic model representing the subtropical high (SH) activity and its abnormality is established. The SH activity and its abnormal mechanism is studied using the developed dynamical model. Results show that the configuration and diversification of the SH equilibriums have good correspondence with the actual short-medium term abnormal activity of the SH. Change of SH potential field brought by the combination of equilibriums is more complex than that by mutation, and their exhibition patterns are different. The mutation behavior from high-value to low-value equilibriums of the SH in summer corresponds with the southward drop of the SH in the observed weather process. The combination behavior of the two steady equilibriums corresponds with disappearance of the "double-ridge" phenomenon of the SH. Dynamical mechanisms of these phenomena are explained.
机译:基于来自NCEP / NCAR(美国国家环境预测中心/美国国家大气研究中心)500 hPa势场的时间序列数据,对经验正交函数(EOF)时空分离和时间动态系统重构的新考虑系列介绍。该方法包括两部分:首先,使用遗传算法(GA)对EOF时间系数序列进行动力学模型反演和模型参数优化;其次,代表副高活动(SH)的非线性动力学模型。并确定其异常。利用发达的动力学模型研究了SH的活动及其异常机制。结果表明,SH平衡的构型和多样性与SH的实际短期短期异常活动具有良好的对应关系。平衡组合所带来的SH势场的变化要比突变所引起的变化要复杂得多,并且它们的展现方式是不同的。在夏季,SH的高值到低值平衡的突变行为与观测到的天气过程中SH的向南下降相对应。两个稳定平衡的组合行为与SH的“双脊”现象的消失相对应。解释了这些现象的动力学机制。

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