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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Middle atmosphere dynamics with gravity wave interactions in the numerical spectral model: Zonal-mean variations
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Middle atmosphere dynamics with gravity wave interactions in the numerical spectral model: Zonal-mean variations

机译:数值谱模型中具有重力波相互作用的中层大气动力学:区域平均变化

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摘要

It is generally accepted that small-scale gravity waves (GW) produce the observed reversals in the zonal circulation and temperature variations of the upper mesosphere (e.g., Lindzen, 1981). There is evidence that GW also play an important role in the quasi-biennial oscillation (QBO) of the lower stratosphere, which can be generated by planetary waves (Lindzen and Holton, 1968). In the present paper, we summarize the modeling studies with the mechanistic numerical spectral model (NSM), which incorporates the Doppler spread parameterization for GW (Hines, 1997a, b). Our studies illuminate the importance of GW filtering and momentum deposition associated with critical level absorption and wave braking. Numerical results from the 2D and 3D versions of the NSM show how these wave interactions generate in the zonal-mean: (a) annual and semi-annual oscillations, (b) QBO with related semi-decadal oscillation and solar cycle effects, and (c) monthly intra-seasonal oscillations.
机译:人们普遍接受的是小尺度重力波(GW)会在上层中层圈的环流和温度变化中产生观察到的逆转(例如Lindzen,1981)。有证据表明,GW在低平流层的准两年一次振荡(QBO)中也起着重要作用,它可能是由行星波产生的(Lindzen和Holton,1968)。在本文中,我们用机械数值谱模型(NSM)总结了建模研究,该模型结合了GW的多普勒扩展参数化(Hines,1997a,b)。我们的研究阐明了与临界水平吸收和波浪制动相关的GW过滤和动量沉积的重要性。 NSM的2D和3D版本的数值结果表明,这些波相互作用如何在纬向均值中产生:(a)年和半年振荡,(b)具有相关的半年代振荡和太阳周期效应的QBO,以及( c)每月的季节内振荡。

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