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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Conditional nonlinear optimal perturbations: behaviour during the evolution of cold vortices over northeast China
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Conditional nonlinear optimal perturbations: behaviour during the evolution of cold vortices over northeast China

机译:条件非线性最优摄动:中国东北冷涡演化过程中的行为

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Conditional nonlinear optimal perturbations (CNOPs) are the initial perturbations that acquire the largest nonlinear evolution at the forecast time with some initial constraint condition. These CNOPs are calculated and examined during the development of two cold vortices with a regional mesoscale primitive-equation model. Computation is carried out over a 48-hour optimization time interval with a dry total perturbation energy norm. Attention is given to the CNOPs in terms of structure and evolution. For the particular cases studied, it was found that the CNOPs, similar to the first linear singular vectors, exhibit localness, in which the wind, temperature and surface pressure perturbation fields match the thermal wind balance qualitatively. The primary perturbation regions of CNOPs are closely related to the source regions of high potential vorticity corresponding to the cold vortices. What is more, CNOPs have deep baroclinic structures, which extend throughout the whole troposphere. With time, CNOPs increase their spatial size over larger areas and become quasi-barotropic at the optimization time. In addition, we found that the kinetic energy contributions are much larger than the potential energy contributions to the final perturbation energy. A noteworthy property is that although the dry total energy norm is used to measure the perturbation growth, the moisture perturbation energy appears early on, which is smaller than the kinetic energy but larger than the potential energy in the lower troposphere at the forecast time. The above numerical experiments are helpful for understanding the mechanism of perturbation growth during the formation of cold vortices. Copyright (C) 2011 Royal Meteorological Society
机译:条件非线性最优摄动(CNOP)是在某些初始约束条件下,在预测时间获得最大非线性演化的初始摄动。这些CNOP是在使用区域中尺度原始方程模型开发两个冷涡流期间进行计算和检查的。计算是在48小时的优化时间间隔内进行的,其总干功为干燥能量标准。在结构和演进方面关注CNOP。对于研究的特定情况,发现CNOP与第一线性奇异矢量相似,表现出局部性,其中风,温度和表面压力扰动场定性地匹配了热风平衡。 CNOP的主要扰动区域与对应于冷涡旋的高潜在涡旋源区域密切相关。此外,CNOP具有深斜压构造,延伸到整个对流层。随着时间的流逝,CNOP在更大的区域上会增加其空间大小,并在优化时变为准正压。此外,我们发现动能的贡献远大于最终扰动能的势能。值得注意的性质是,尽管使用干总能量范数来衡量扰动的增长,但水分扰动能早就出现了,它比动能小,但比对流层低层的势能大。上述数值实验有助于理解冷涡形成过程中扰动的生长机理。皇家气象学会版权所有(C)2011

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