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Characteristics of episodes with extremely low ozone values in the northern middle latitudes 1957#x2212;2000

机译:1957-2000年北中纬度臭氧值极低的事件的特征

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摘要

A number of episodes are observed when the total ozone for 2 to 3 days has fallen below 220 matm-cm in the northern mid- and polar latitudes in autumn. The occurrences of such episodes represent ozone deviations of about one-third from the pre-1976 Oct-Nov-Dec monthly mean! By using primarily quality checked Dobson data, a clear identification was made of more than three dozen short spells with extremely low ozone in the 1957–1978 period. In the following twenty-two years (1979–2000), using mainly TOMS data, one can identify ~ 46 cases with ozone values falling below 220 matm-cm for longer than 1 day, with each time over an area greater than 500,000 km . The Ozone Mass Deficiency (OMD) from the pre-1976 average ozone values over the affected area was ~2.8 Mt per day, i.e. four to seven times greater than it would be, assuming only a long-term trend in the Oct-Nov-Dec period. The Extremely Low Ozone (ELO) events on the day of their appearance over the N. Atlantic/European region contribute to the OMD by representing 16% of the deficiency due to the Oct-Nov trend in the entire 40–65° N latitudinal belt. The OMD of the greater pool with low ozone (here taken as 260 matm-cm) surrounding the area of the lowest events could contribute on the day of their appearance in Oct-Nov up to 60% and in December, ~30% to the deficiency due to the trend over the entire 40–65° N belt. Analysis of synoptic charts, supported by a backward trajectory on the isentropic surfaces 350 and 380 K, shows that in most of the events, subtropical air masses with low ozone content were transported from the Atlantic toward the UK, Scandinavia, and in many cases, further to the western sub-polar regions of Russia. This transport was sometimes combined with upward motions above a tropospheric anticyclone which lifted low ozone mixing ratios to higher altitudes. The ELO events cause a significant deficiency above the tropopause where, in general, the subtropical air is injected. In fact, the overall amount of ozone is not depleted, but redistributed on the hemispheric scale. Review of low ozone events, defined as days with negative deviations from the pre-1976 averages greater than 25% show, in general, similar origin. The seasonally averaged area with ELO and the associated OMD, as well as for the cases with deviations –25%, has increased during the 1990s, which could be an indication of stronger and/or more frequent subtropical air intrusions. Their occurrences could contribute noticeably to the ozone deficiency of the middle latitude ozone during the days of ELO appearances; however, their contribution to the long-term trend of the ozone seasonal decline is of the order of ~10%.Atmospheric composition and structure (middle atmosphere - composition and chemistry) Meteorology and atmospheric dynamics (middle atmosphere dynamics)
机译:在秋季,北半球和中纬度地区2至3天的臭氧总量降至220厘米/厘米以下时,会观察到许多事件。此类事件的发生表明臭氧与1976年之前的10月-11月-12月月平均值相差约三分之一!通过主要使用质量检查过的多布森数据,在1957年至1978年期间,清楚地识别了三打以上臭氧极低的短咒语。在接下来的二十二年(1979-2000年)中,主要使用TOMS数据,可以识别约46例臭氧值低于220 matm-cm且持续超过1天的案例,每次的面积均超过500,000 km。假设受灾地区的长期臭氧趋势只有长期趋势,从1976年前的受灾地区平均臭氧水平得出的臭氧质量缺损(OMD)约为每天2.8 Mt,即是该水平的四到七倍。十二月期。出现在北大西洋/欧洲地区当天的极低臭氧(ELO)事件占整个40–65°N纬度带的10月至11月趋势的16%,是造成OMD的原因。 。最低事件区域周围低臭氧(此处称为<260 matm-cm)的较大水池的OMD可能在其出现的当日(10月至11月)高达60%,而在12月时约为30%。由于整个40–65°N带上的趋势导致的缺陷。通过对等熵线350和380 K上的后向轨迹进行支持的天气图分析表明,在大多数情况下,臭氧含量较低的亚热带气团是从大西洋输送到英国,斯堪的纳维亚半岛的,在许多情况下,到俄罗斯的西部亚极地区。这种运输有时与对流层反气旋上方的向上运动结合在一起,从而将低臭氧混合比提升至更高的高度。 ELO事件导致对流层顶上方的明显不足,通常在这里注入亚热带空气。实际上,臭氧的总量并没有耗尽,而是在半球范围内重新分配。回顾低臭氧事件的发生,通常将其定义为与1976年之前的平均值相比具有负偏差的天数大于25%。 ELO和相关OMD的季节性平均面积,以及偏差> –25%的情况,在1990年代期间有所增加,这可能表明亚热带空气侵扰更强和/或更频繁。它们的出现可能会在出现ELO期间显着加剧中纬度臭氧的臭氧缺乏;但是,它们对臭氧季节下降的长期趋势的贡献约为10%。大气成分和结构(中间大气-成分和化学)气象和大气动力学(中间大气动力学)

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    Bojkov R. D.; Balis D. S.;

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  • 年度 2001
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  • 正文语种 eng
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