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A novel tropopause-related climatology of ozone profiles

机译:臭氧型材的新型对流性相关的气候学

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A new ozone climatology, based on ozonesonde and satellite measurements, spanning the altitude region between the earth's surface and ~60 km is presented (TpO3 climatology). This climatology is novel in that the ozone profiles are categorized according to calendar month, latitude and local tropopause heights. Compared to the standard latitude–month categorization, this presentation improves the representativeness of the ozone climatology in the upper troposphere and the lower stratosphere (UTLS). The probability distribution of tropopause heights in each latitude–month bin provides additional climatological information and allows transforming/comparing the TpO3 climatology to a standard climatology of zonal mean ozone profiles. The TpO3 climatology is based on high-vertical-resolution measurements of ozone from the satellite-based Stratospheric Aerosol and Gas Experiment II (in 1984 to 2005) and from balloon-borne ozonesondes from 1980 to 2006. The main benefits of the TpO3 climatology are reduced standard deviations on climatological ozone profiles in the UTLS, partial characterization of longitudinal variability, and characterization of ozone profiles in the presence of double tropopauses. The first successful application of the TpO3 climatology as a priori in ozone profile retrievals from Ozone Monitoring Instrument on board the Earth Observing System (EOS) Aura satellite shows an improvement of ozone precision in UTLS of up to 10% compared with the use of conventional climatologies. In addition to being advantageous for use as a priori in satellite retrieval algorithms, the TpO3 climatology might be also useful for validating the representation of ozone in climate model simulations.
机译:基于臭氧和卫星测量的新臭氧气候学,介绍了地球表面和〜60公里的高度区域(TPO3气候学)。这种气候学是新颖的,因为臭氧型材根据日历月,纬度和局部对流层高度进行分类。与标准纬度的分类相比,该介绍改善了臭氧气候学中的上层流球菌和较低平流层(UTL)的代表性。每个纬度月箱中的对流度高度的概率分布提供了额外的气候信息,并允许将TPO3气候学转换为Zonal平均臭氧型材的标准气候学。 TPO3气候学基于卫星的平坦气溶胶气溶胶和天然气实验II(1984年至2005年)的高垂直分辨率测量,从1980年到2006年的球囊传播的臭氧。TPO3气候学的主要好处是降低了UTL中的气候臭氧型谱的标准偏差,在双对流气体存在下部分表征纵向变异性和臭氧谱的表征。 TPO3气候学的首次成功应用作为臭氧监测仪器的臭氧配置文件中的先验,地球观测系统(EOS)Aura卫星在utls中提高了常规气候的UTL中臭氧精度高达10% 。除了有利的用作卫星检索算法中的先验之外,TPO3气候学可能也可用于验证气候模型模拟中臭氧的表示。

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