National Centre for Atmospheric Science (NCAS)-Climate, University of Oxford, Atmospheric, Oceanic and Planetary Physics, Clarendon Laboratory, Parks Road, Oxford, OX1 3PU, UK.
Met Office Hadley Centre, FitzRoy Road, Exeter, Devon, EX1 3PB, UK.
Science. 2016 Sep 23;353(6306):1424-1427. doi: 10.1126/science.aah4156. Epub 2016 Sep 8.
One of the most repeatable phenomena seen in the atmosphere, the quasi-biennial oscillation (QBO) between prevailing eastward and westward wind jets in the equatorial stratosphere (approximately 16 to 50 kilometers altitude), was unexpectedly disrupted in February 2016. An unprecedented westward jet formed within the eastward phase in the lower stratosphere and cannot be accounted for by the standard QBO paradigm based on vertical momentum transport. Instead, the primary cause was waves transporting momentum from the Northern Hemisphere. Seasonal forecasts did not predict the disruption, but analogous QBO disruptions are seen very occasionally in some climate simulations. A return to more typical QBO behavior within the next year is forecast, although the possibility of more frequent occurrences of similar disruptions is projected for a warming climate.
在大气中最可重复出现的现象之一是准两年振荡(QBO),即在赤道平流层(约 16 至 50 公里高度)盛行的东风和西风射流之间交替出现,这种现象在 2016 年 2 月出人意料地被打乱了。在较低平流层的东风相中形成了一个前所未有的西风射流,这不能用基于垂直动量传输的标准 QBO 范例来解释。相反,主要原因是波从北半球输送动量。季节预测并没有预测到这种混乱,但在某些气候模拟中偶尔会出现类似的 QBO 混乱。预计在未来一年内将恢复更典型的 QBO 行为,尽管预计在气候变暖的情况下,类似的混乱发生频率会更高。