Atlantic blocking events in a simplified nonlinear baroclinic model for local finite-amplitude wave activity

IF 2.3 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES
Ning Shi , Bamidele Abiodun Paul , Wencai Liu
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引用次数: 0

Abstract

To better understand the mechanisms underlying the formation of blocking highs over the North Atlantic as a type of large-amplitude disturbance, this paper reports results from numerical experiments within the framework of local finite-amplitude wave activity (LWA). The numerical model employed in this study explicitly depicts two important atmospheric internal dynamic processes—nonlinear zonal eddy flux and Rossby wave packet propagation—which have been individually emphasized by different previous studies. The simulation results reveal that these two dynamic processes are the dominant contributors to the formation of Atlantic blocking cases. However, they exert different influences over different regions. The southern and northern parts of the primary LWA associated with the blocking cases are mainly induced by the nonlinear zonal eddy flux and Rossby wave packet propagation, respectively. Thus, this study reconciles and integrates insights from previous studies on Atlantic blocking events, providing a cohesive understanding of their formation.

摘要

为研究北大西洋阻高的形成机制, 本文在局部有限振幅波活动 (LWA) 框架下进行了一系列数值实验. 采用的数值模型能显式地描绘出两种重要的大气内部动力过程, 即非线性纬向位涡通量和Rossby波包传播. 模拟结果显示, 这两种动力学过程均是形成大西洋阻高的重要机理. 具体地, 非线性纬向位涡通量和Rossby波包传播, 分别是大西洋阻高南部和北部LWA形成的主导因子. 因此, 本研究综合了前人关于大西洋阻高的研究成果, 为其形成机理提供了新的认识.

Abstract Image

局部有限振幅波活动的简化非线性气压模型中的大西洋阻塞事件
为了更好地理解北大西洋上空阻塞性高气压作为一种大振幅扰动的形成机制,本文报告了在局地有限振幅波活动(LWA)框架内的数值实验结果。本研究采用的数值模式明确描述了两个重要的大气内部动力过程--非线性带状涡流通量和罗斯比波包传播--这两个过程在以前的不同研究中被单独强调过。模拟结果表明,这两个动力过程是大西洋阻塞情况形成的主要因素。不过,它们对不同区域的影响不同。与阻塞情况相关的初级 LWA 的南部和北部主要分别由非线性带状涡通量和罗斯比波包传播引起。因此,本研究调和并整合了以往关于大西洋阻塞事件的研究成果,为理解其形成提供了一个连贯的思路。摘要为研究北大西洋阻高的形成机制,本文在局部有限振幅波活动(Lwa)框架下进行了一系列数值实验。采用的数值模型能显式地描绘出两种重要的大气内部动力过程, 即非线性纬向位涡通量和 Rossby 波包传播。模拟结果显示,这两种动力学过程均是形成大西洋阻高的重要机理。具体地,非线性纬向位涡通量和 Rossby 波包传播, 分别是大西洋阻高南部和北部 LWA 形成的主导因子。因此,本研究综合了前人关于大西洋阻高的研究成果,为其形成机理提供了新的认识。
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来源期刊
Atmospheric and Oceanic Science Letters
Atmospheric and Oceanic Science Letters METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
4.20
自引率
8.70%
发文量
925
审稿时长
12 weeks
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