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FAST OZONE LOSS AROUND THE POLAR VORTEX DURING 2002/2003 ARCTIC WINTER DEEP MINIHOLE EVENT

机译:2002/2003年北极冬季深层小孔事件期间极涡附近的臭氧快速消失

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摘要

A three-dimensional (3D) off-line chemical transport model (CTM) has been used to study an Arctic ozone minihole event in early December 2002, when the meteorological condition were severely colder than in recent years. The minimum temperatures were below 188 K on 6 December 2002 and remained below 195 K for the entire month. Such temperatures are low enough for the formation of PSCs (polar stratospheric clouds) which were observed by a visibleear infrared solar occultation instrument by the Polar Ozone and Aerosol Measurement (POAM) Ⅲ experiment. The SLIMCAT model compares well with the depth and evolution of the ozone distribution as observed by the second European Remote Sensing Satellite (ERS-2) Global Ozone Monitoring Experiment (GOME). The combined effect of a very strong and large intrusion of sub-tropical air, and uplifting of air masses of low ozone concentrations from the troposphere plays important role in the fomation of the ozone minihole. The modelled chemical ozone loss rate was relatively fast in the lower stratosphere in the region of frequent PSCs and higher levels of ClO and BrO. The observed PSCs in the vicinity of the minihole supports the model-predicted location of PSCs and chlorine activation. However, ozone miniholes have been attributed almost entirely to dynamical effects due to its short duration.
机译:三维(3D)离线化学运输模型(CTM)已用于研究2002年12月上旬的北极臭氧小孔事件,当时的气象条件比最近几年严重寒冷。最低温度在2002年12月6日低于188 K,并且在整个月中一直低于195K。这样的温度足够低以形成PSC(极地平流层云),而PSC的形成是通过极地臭氧和气溶胶测量(POAM)Ⅲ实验通过可见/近红外太阳掩星仪观测到的。 SLIMCAT模型与第二次欧洲遥感卫星(ERS-2)全球臭氧监测实验(GOME)所观察到的臭氧分布的深度和演变具有良好的对比。对亚热带空气的强烈强烈入侵和对流层中低浓度臭氧浓度的升高共同作用,在形成臭氧小孔方面起着重要作用。在平流层下部,频繁的PSC区域以及较高的ClO和BrO区域,模拟的化学臭氧损失速率相对较快。在微孔附近观察到的PSC支持模型预测的PSC和氯活化位置。但是,由于臭氧微孔的持续时间短,几乎将其完全归因于动力作用。

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