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Record low ozone values over the Arctic in boreal spring 2020

机译:在Boreal Spring 2020中记录北极的低臭氧值

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Ozone data derived from the Tropospheric Monitoring Instrument (TROPOMI) sensor on board the Sentinel-5 Precursor satellite show exceptionally low total ozone columns in the polar region of the Northern Hemisphere (Arctic) in spring 2020. Minimum total ozone column values around or below 220 Dobson units (DU) were seen over the Arctic for 5?weeks in March and early April?2020. Usually the persistence of such low total ozone column values in spring is only observed in the polar Southern Hemisphere (Antarctic) and not over the Arctic. These record low total ozone columns were caused by a particularly strong polar vortex in the stratosphere with a persistent cold stratosphere at higher latitudes, a prerequisite for ozone depletion through heterogeneous chemistry. Based on the ERA5, which is the fifth generation?of the European Centre for Medium-Range Weather Forecasts (ECMWF) atmospheric reanalysis, the Northern Hemisphere winter 2019/2020 (from December to March) showed minimum polar cap temperatures consistently below 195?K around 20?km altitude, which enabled enhanced formation of polar stratospheric clouds. The special situation in spring 2020 is compared and discussed in context with two other Northern Hemisphere spring seasons, namely those in 1997 and 2011, which also displayed relatively low total ozone column values. However, during these years, total ozone columns below 220?DU over several consecutive days were not observed in spring. The similarities and differences of the atmospheric conditions of these three events and possible explanations for the observed features are presented and discussed. It becomes apparent that the monthly mean of the minimum total ozone column value for March?2020 (221?DU) was clearly below the respective values found in March 1997 (267?DU) and 2011 (252?DU), which highlights the special evolution of the polar stratospheric ozone layer in the Northern Hemisphere in spring 2020. A comparison with a typical ozone hole over the Antarctic (e.g., in 2016) indicates that although the Arctic spring 2020 situation is remarkable, with total ozone column values around or below 220?DU observed over a considerable area (up to 0.9?million?km 2 ), the Antarctic ozone hole shows total ozone columns typically below 150?DU over a much larger area (of the order of 20?million?km 2 ). Furthermore, total ozone columns below 220?DU are typically observed over the Antarctic for about 4?months.
机译:臭氧数据来自船上的对流层监测仪器(Tropomi)传感器,Sentinel-5前体卫星在春季2020年北半球(北极)的极地区域显示出极低的总臭氧柱。最小总臭氧柱值周围或低于220在3月份和4月初的北极地区和4月初,在北极来看了多斯森单位(du)?2020年。通常在北半球(南极)中仅观察到弹簧中这种低总臭氧柱值的持续存在,而不是北极。这些记录低总臭氧色谱柱是由平流层中特别强的极性涡流引起的,在较高的纬度下具有持续的冷平流层,通过异质化学臭氧耗尽的先决条件。基于ERA5,这是第五代(ECMWF)的第五代(ECMWF)大气再分析,北半球冬季2019/2020(从12月到3月)显示最小极帽温度在195年低于195?K.K大约20个?KM高度,这使得能够增强极性平流层云的形成。将春天2020的特殊情况进行比较,并在与另外两种北半球春季季节的背景下进行了讨论,即1997年和2011年的北半球春季,这也显示了相对较低的总臭氧柱值。然而,在这些年期间,春季未观察到在220年以下的臭氧柱以下几次下降。提出并讨论了这三个事件的大气条件的相似性和差异以及对观察到的特征的可能解释。显而易见的是,3月份的最小臭氧柱值的月平均值明显低于1997年3月(267?du)和2011年(252 u)和2011年(252 u)的相应价值观以下北半球北半球偏极平流层臭氧层的演变。与南极上典型臭氧孔的比较(例如,2016年)表明虽然北极弹簧2020的情况显着,但总臭氧柱值周围或下方220?Du观察到相当大的区域(高达0.9?百万?KM 2),南极臭氧孔显示出通常在150以下的总臭氧柱,在更大的面积(约20?百万?KM 2)上方。此外,通常在南极观察到220以下的总臭氧柱约4个月。

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