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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Sensitivity of the boreal winter circulation in the middle atmosphere to the quasi-biennial oscillation in MAECHAM5 simulations
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Sensitivity of the boreal winter circulation in the middle atmosphere to the quasi-biennial oscillation in MAECHAM5 simulations

机译:在MAECHAM5模拟中,中层大气冬季冬季循环对准两年一次振荡的敏感性

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The polar vortex in the Northern Hemisphere exhibits high intraseasonal and interannual variability which, to some degree, may be controlled by the quasi-biennial oscillation (QBO) in the tropical stratosphere. Here we analyze the QBO signal in the Northern Hemisphere polar vortex in a model simulation using the general circulation model MAECHAM5 (Middle Atmosphere European Center Hamburg Model), which simulates the QBO as an internal mode of variability. Composites have been computed for the westerly and easterly QBO phases from early winter to late winter (November–December, December–January and January–February) of a 50-year experiment containing 20 complete QBO cycles. This method identifies tropical and midlatitude patterns in wind and temperature that are related to the secondary meridional circulation of the QBO extending towards the winter pole. In the tropics, significant QBO signature is observed in the mesosphere up to 0.05 hPa only in early winter and mainly in the easterly QBO phase forced by the parameterized gravity waves-mean flow interaction. At high latitudes, MAECHAM5 shows a significantly warmer (colder) polar stratosphere in the easterly (westerly) QBO phase at 30 hPa accompanied by a weaker (stronger) polar vortex in the late winter months, from December to February (December to January) in the easterly (westerly) phase of the QBO. In early winter there is no significant change in temperature and zonal mean zonal wind in the polar stratosphere. The analysis of EP fluxes shows a different behavior between QBO phases, with changes in the waveguide. Wave propagation occurs upwards and polewards in the easterly QBO phase at 30 hPa, while waves are refracted equatorward in the westerly phase. No relationship has been found between the tropical QBO and the final warming at the end of the boreal winter.
机译:北半球的极涡表现出较高的季节内和年际变化,这在一定程度上可能受热带平流层的准两年一次振荡(QBO)控制。在这里,我们使用通用循环模型MAECHAM5(中欧大气中心汉堡模型)模拟了北半球极涡中的QBO信号,该模型将QBO模拟为内部变率模式。已计算了一个包含20个完整QBO周期的50年实验的从初冬到冬末(11月至12月,12月至1月和1月至2月)的西风和东风QBO阶段的合成物。该方法确定了风和温度的热带和中纬度模式,这些模式与QBO向冬季极延伸的二次子午环流有关。在热带地区,仅在初冬时在中层大气中观测到显着的QBO特征,直到0.05 hPa,并且主要在参数化重力波与平均流相互作用强迫的东风QBO阶段。在高纬度地区,MAECHAM5在30 hPa的东风(西风)QBO阶段显示出极高的(平缓)极平流层,在冬季末期(12月至2月(12月至1月)),伴随着较弱的(强)极涡。 QBO的东风(西风)阶段。在冬季初,极地平流层的温度和纬向平均纬向风没有明显变化。对EP通量的分析表明,随着波导的变化,QBO相之间的行为有所不同。在30 hPa的东风QBO阶段,波传播向上和向极化,而在西风阶段,波向赤道折射。在热带QBO与北方冬季结束时的最终变暖之间未发现任何关系。

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