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The observed structure of convectively coupled Kelvin waves: Comparison with simple models of coupled wave instability

机译:对流耦合开尔文波的观测结构:与耦合波不稳定性简单模型的比较

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Observations of the horizontal and vertical structure of convectively coupled Kelvin waves are presented and are compared with the predicted structures of moist Kelvin ( or gravity) waves in three simple models of coupled wave instability: wave - conditional instability of the second kind ( CISK), wind-induced surface heat exchange (WISHE), and stratiform instability. The observations are based on a linear regression analysis of multiple years of ECMWF reanalysis and station radiosonde data. Results suggest that both the wave-CISK and stratiform instability theories successfully predict many important features of observed moist Kelvin waves, but that unrealistic aspects of these models limit their ability to provide comprehensive explanations for the dynamics of these waves. It is suggested that an essential component of any theory for moist Kelvin waves is the second baroclinic mode heat source associated with stratiform precipitation. [References: 45]
机译:给出了对流耦合开尔文波的水平和垂直结构的观测结果,并将其与湿开尔文(或重力)波的预测结构进行了比较,并通过三种简单的耦合波不稳定性模型进行了比较:波-第二种条件不稳定性(CISK),风致表面热交换(WISHE)和层状不稳定性。这些观测结果基于对ECMWF多年重新分析和电台探空仪数据的线性回归分析。结果表明,波动CISK和层状不稳定性理论都成功地预测了观测到的潮湿开尔文波的许多重要特征,但是这些模型的不切实际的方面限制了它们为这些波的动力学提供全面解释的能力。有人认为,湿开尔文波理论的基本组成部分是与层状降水有关的第二斜斜模式热源。 [参考:45]

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