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A tropospheric pathway of the stratospheric quasi-biennial oscillation (QBO) impact on the boreal winter polar vortex

机译:Stratospheric Quasi-Biantialial振荡(QBO)对北方冬季极性涡旋的对流层途径

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The quasi-biennial oscillation (QBO) is quasi-periodic oscillation of the tropical zonal wind in the stratosphere. When the tropical lower stratospheric wind is easterly (westerly), the winter Northern Hemisphere (NH) stratospheric polar vortex tends to be weak (strong). This relation is known as the Holton–Tan relationship. Several mechanisms for this relationship have been proposed, especially linking the tropics with high latitudes through stratospheric pathway. Although QBO impacts on the troposphere have been extensively discussed, a tropospheric pathway of the Holton–Tan relationship has not been explored previously. Here, we propose a tropospheric pathway of the QBO impact, which may partly account for the Holton–Tan relationship in early winter, especially in the November–December period. The study is based on analyses of observational data and results from a simple linear model and atmospheric general circulation model (AGCM) simulations. The mechanism is summarized as follows: the easterly phase of the QBO is accompanied with colder temperature in the tropical tropopause layer, which enhances convective activity over the tropical western Pacific and suppresses it over the Indian Ocean, thus enhancing the Walker circulation. This convection anomaly generates a Rossby wave train, propagating into the midlatitude troposphere, which constructively interferences with the climatological stationary waves, especially in wavenumber 1, resulting in enhanced upward propagation of the planetary wave and a weakened polar vortex.
机译:准双年振荡(QBO)是平流层中热带地风的准周期性振荡。当热带较低的划分风中东(Westerly)时,冬季半球(NH)平流层极性漩涡趋于薄弱(强)。这种关系被称为Holton-Tan关系。已经提出了几种对这种关系的机制,特别是通过平流层途径将热带与高纬度的连接。尽管对对流层对流层的影响得到了广泛的讨论,但之前尚未探讨Holton-Tan关系的对流层途径。在这里,我们提出了QBO影响的对流层途径,这可能部分考虑到初冬的Holton-Tan关系,特别是在11月至12月期间。该研究基于观察数据的分析和来自简单的线性模型和大气通用循环模型(AGCM)模拟的结果。该机制总结如下:QBO的东部阶段伴随着热带对象间层的温度较冷,这提高了热带西部太平洋的对流活动,并抑制了印度洋,从而增强了助行器流通。该对流异常产生Rossby波动火车,传播到中间层对流层中,这建设性地与气候静止波的干扰,特别是在波数1中,导致行星波的向上传播和弱化极性涡旋。

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