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Connections between the Madden–Julian Oscillation and surface temperatures in winter 2018 over eastern North America

机译:北美东部2018年冬季Madden–Julian涛动与地表温度之间的联系

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摘要

From January to March 2018, one of the strongest Madden–Julian Oscillation (MJO) events of the last 45 years progressed eastward along the equator from the Indian Ocean to the Pacific Ocean then back to the Indian Ocean. In response to strong tropospheric heating in the MJO's active convective envelope, several pronounced Rossby wave trains developed and extended from the equatorial tropics, across the extratropical Pacific and North America, and into the extratropical Atlantic. The origins of these Rossby wave trains evolved eastward with time, generally following the eastward progression of the MJO, but preferentially clustered in subtropical India and Southeast Asia and in two locations in the subtropical Pacific Ocean: along 160°E and 170°W. Over eastern North America, surface and lower‐tropospheric temperatures rose to more than 12 °C above normal when the MJO convective envelope was over the Indian Ocean (in mid‐January) and Western Hemisphere (in late February). In between those warm periods, temperatures cooled to below normal while the MJO convection was over the western Pacific. These temperature anomalies evolved in time with the pronounced Rossby wave trains that linked eastern North America with the Tropics in the Eastern Hemisphere: warm temperatures occurred when ridging was present over eastern North America and cooler temperatures occurred when troughing was present. This variability is discussed and placed in context of recent work showing the MJO's role in modulating temperature and circulation.
机译:从2018年1月至3月,过去45年来最强烈的Madden–Julian涛动(MJO)事件之一是沿着赤道向东发展,从印度洋到太平洋,然后又回到印度洋。为了响应MJO活动对流层中强烈的对流层加热,发展了几个明显的Rossby波列,它们从赤道热带延伸并延伸到温带太平洋和北美,并进入了温带大西洋。这些Rossby波列的起源通常随着MJO的向东发展而随时间向东发展,但优先聚集在亚热带印度和东南亚以及亚热带太平洋的两个位置:沿160°E和170°W。在北美东部,当MJO对流包裹层位于印度洋(1月中旬)和西半球(2月下旬)时,地表和低层对流层温度比正常高12°C以上。在这两个暖期之间,MJO对流在西太平洋上空,温度降到正常以下。这些温度异常随着将北美洲东部与东半球的热带地区联系起来的明显的罗斯比波列而随时间演变:当北美东部出现褶皱时出现温暖的温度,而当存在波谷时出现凉爽的温度。讨论了这种可变性,并将其放在最近的工作中,表明MJO在调节温度和循环中的作用。

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