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Case study of ozone anomalies over northern Russia in the 2015/2016 winter: measurements and numerical modelling

机译:2015/2016年冬季俄罗斯北部臭氧异常的案例研究:测量和数值模拟

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Episodes of extremely low ozone columns were observed over the territory of Russia in the Arctic winter of 2015/2016 and the beginning of spring 2016. We compare total ozone columns (TOCs) from different remote sensing techniques (satellite and ground-based observations) with results of numerical modelling over the territory of the Urals and Siberia for this period. We demonstrate that the provided monitoring systems (including the new Russian Infrared Fourier Spectrometer IKFS-2) and modern three-dimensional atmospheric models can capture the observed TOC anomalies. However, the results of observations and modelling show differences of up to 20?%–30?% in TOC measurements. Analysis of the role of chemical and dynamical processes demonstrates that the observed short-term TOC variability is not a result of local photochemical loss initiated by heterogeneous halogen activation on particles of polar stratospheric clouds that formed under low temperatures in the mid-winter.
机译:在2015/2016冬季和2016年春季初,在俄罗斯领土上观察到极低的臭氧柱事件。我们将来自不同遥感技术(卫星和地面观测)的总臭氧柱(TOC)与此期间在乌拉尔和西伯利亚地区进行数值模拟的结果。我们证明提供的监视系统(包括新的俄罗斯红外傅里叶光谱仪IKFS-2)和现代三维大气模型可以捕获观测到的TOC异常。但是,观察和建模结果表明,TOC测量值之间的差异高达20 %% – 30 %%。对化学过程和动力学过程的作用的分析表明,观察到的短期TOC变异性不是由冬季中期在低温下形成的极地平流层云颗粒上的异质卤素活化引发的局部光化学损失的结果。

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