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A global stratospheric bromine monoxide climatology based on the BASCOE chemical transport model

机译:基于BASCOE化学迁移模型的全球平流层一氧化溴气候

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摘要

A new climatology of stratospheric BrO profiles based on a parameterization using dynamical and chemical indicators has been developed, with the aim to apply it to the retrieval of tropospheric BrO columns from space nadir measurements. The adopted parameterization is based on three years of output data from the 3-D chemistry transport model BASCOE. The impact of the atmospheric dynamics on the stratospheric BrO distribution is treated by means of Bry/ozone correlations built from 3-D-CTM model results, while photochemical effects are taken into account using stratospheric NO_2 columns as an indicator of the BrO/Br_y ratio. The model simulations have been optimized for bromine chemistry and budget, and validated through comparisons using an extensive data set of ground-based, balloon-borne and satellite limb (SCIAMACHY) stratospheric BrO observations.
机译:基于动力学和化学指标的参数化,开发了一种新的平流层BrO剖面气候,目的是将其应用于从空间最低点获取对流层BrO柱。采用的参数化基于3D化学迁移模型BASCOE的三年输出数据。大气动力学对平流层BrO分布的影响通过3-D-CTM模型结果建立的Bry /臭氧相关性进行处理,同时使用平流层NO_2柱作为BrO / Br_y比的指标考虑了光化学效应。该模型模拟已针对溴化学和预算进行了优化,并通过使用地面,气球和卫星肢体(SCIAMACHY)平流层BrO观测的广泛数据集进行了比较进行了验证。

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