North American cooling signature of strong stratospheric wave events depends on the QBO phase

Xiuyuan Ding, Gang Chen, Gudrun Magnusdottir
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Abstract

Extreme stratospheric wave activity has been linked to surface cold extremes over North America, but little is known whether the Quasi-biennial Oscillation (QBO) plays a role in this linkage. Here, by comparing strong stratospheric wave events during the westerly phase (wQBO) with those during the easterly phase (eQBO), we show that the cooling signature following strong wave events depends on the QBO phase in observations. During wQBO, strong wave events are followed by an increased risk of North American cold extremes and a vertical structure shift from a westward phase tilt to an eastward tilt. However, strong wave events under eQBO do not change the cold risk nor alter the vertical tilt. We further examine this dependence on QBO in QBO-resolving climate models, finding that the cooling signature of strong wave events in models is largely insensitive to QBO phases. This insensitivity is suggested to be linked to model biases in the stratospheric wave representation.
强平流层波事件的北美冷却特征取决于 QBO 阶段
北美洲上空的极端平流层波活动与地表极端寒冷有关,但人们对准双年涛动(QBO)是否在这种联系中发挥作用知之甚少。在这里,通过比较西风相(wQBO)和东风相(eQBO)期间的平流层强波事件,我们表明强波事件后的冷却特征取决于观测中的 QBO 相位。在wQBO期间,强海浪事件之后,北美出现极端寒冷的风险增加,垂直结构从西风相位倾斜转变为东风相位倾斜。然而,在 eQBO 条件下,强海浪事件不会改变寒冷风险,也不会改变垂直倾斜。我们在QBO解析气候模式中进一步研究了这种对QBO的依赖性,发现模式中强波事件的冷却特征对QBO相位基本不敏感。这种不敏感性被认为与平流层波表征的模式偏差有关。
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