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Improvement of OMI ozone profile retrievals in the upper troposphere and lower stratosphere by the use of a tropopause-based ozone profile climatology

机译:通过使用基于对流层顶的臭氧廓线气候学,改善对流层上部和平流层下部OMI臭氧廓线的获取

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Motivated by the need of obtaining a more accurate global ozone distribution in the upper troposphere and lower stratosphere (UTLS), we have investigated the use of a tropopause-based (TB) ozone climatology in ozone profile retrieval from the Ozone Monitoring Instrument (OMI). Due to the limited vertical ozone information in the UTLS region from OMI backscattered ultraviolet radiances, better climatological a priori information is important for improving ozone profile retrievals. We present the new TB climatology and evaluate the result of retrievals against previous work. The TB climatology is created using ozonesonde profiles from 1983 through 2008 extended with climatological ozone data above sonde burst altitude (~35 km) with the corresponding temperature profiles used to identify the thermal tropopause. The TB climatology consists of the mean states and 1σ standard deviations for every month for each 10° latitude band. Compared to the previous TB climatology by Wei et al. (2010), three additional processes are applied in deriving our climatology: (1) using a variable shifting offset to define the TB coordinate, (2) separating ozonesonde profiles into tropical and extratropical regimes based on a threshold of 14 km in the thermal tropopause height, and (3) merging with an existing climatology from 5-10 km above the tropopause. The first process changes the reference of profiles to a variable position between local and mean tropopause heights within ±5 km of the tropopause and to the mean tropopause elsewhere. The second helps to preserve characteristics of either tropical or extratropical ozone structures depending on tropopause height, especially in the subtropical region. The third improves the climatology above ozonesonde burst altitudes and in the stratosphere by using climatology derived from many more satellite observations of ozone profiles. With aid from the National Centers for Environmental Prediction (NCEP) Global Forecast System (GFS) tropopause height, the new climatology and retrieval can better represent the dynamical variability of ozone in the tropopause region. The new retrieval result demonstrates significant improvement of UTLS ozone, especially in the extratropical UTLS, when evaluated using ozonesonde measurements and the meteorological data. The use of TB climatology significantly enhances the spatial consistency and the statistical relationship between ozone and potential vorticity/tropopause height in the extratropical UTLS region. Comparisons with ozonesonde measurements show substantial improvements in both mean biases and their standard deviations over the extratropical lowermost stratosphere and upper troposphere. Overall, OMI retrievals with the TB climatology show improved ability in capturing ozone gradients across the tropopause found in tropical/extratropical ozonesonde measurements.
机译:由于需要在对流层高空和平流层下层(UTLS)中获得更准确的全球臭氧分布,我们研究了基于对流层顶(TB)的臭氧气候在从臭氧监测仪(OMI)提取臭氧剖面中的用途。由于来自OMI反向散射紫外线辐射的UTLS区域中的垂直臭氧信息有限,因此更好的气候先验信息对于改善臭氧分布图检索非常重要。我们介绍了新的结核病气候,并根据先前的工作评估了检索结果。 TB气候学是利用1983年至2008年的臭氧探空仪资料建立的,并扩展了高于探空仪爆破高度(〜35 km)的气候臭氧资料,并使用了相应的温度资料来识别对流层顶热。 TB气候由每个10°纬度带每个月的平均状态和1σ标准偏差组成。与Wei等人先前的TB气候相比。 (2010年),我们采用了另外三个过程来推导我们的气候:(1)使用可变的偏移量来定义TB坐标,(2)根据对流层顶热14 km的阈值将臭氧探空仪剖面分为热带和温带地区(3)与对流层顶上方5-10 km的现有气候合并。第一个过程将轮廓的参考更改为在对流层顶±5 km以内的局部对流层顶高度与平均对流层顶高度之间的可变位置,以及其他地方的对流层顶平均高度。第二个有助于根据对流层顶高度,特别是在亚热带地区,保持热带或温带臭氧结构的特征。第三种方法是通过使用从更多的卫星臭氧剖面观测资料中得出的气候学,来改善高于探空仪爆破高度和平流层的气候。在国家环境预测中心(NCEP)全球预报系统(GFS)对流层顶高度的帮助下,新的气候学和取回方法可以更好地表示对流层顶区域中臭氧的动态变化。新的检索结果表明,当使用臭氧探空仪测量值和气象数据进行评估时,尤其是在温带UTLS中,UTLS臭氧有了显着改善。 TB气候学的使用显着增强了空间上的一致性,并提高了臭氧在温带UTLS地区与潜在涡度/对流层顶高度之间的统计关系。与臭氧探空仪测量值的比较表明,在温带最下层平流层和对流层上,平均偏差及其标准偏差都得到了显着改善。总体而言,在TB气候条件下进行OMI检索显示,在热带/外向型臭氧探空仪测量中发现的对流层顶中的臭氧梯度捕获能力得到了提高。

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