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A model study of tropospheric impacts of the Arctic ozone depletion 2011

机译:2011年北极臭氧消耗对流层影响的模型研究

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Record Arctic ozone loss in spring 2011 occurred in concert with record positive values of the tropospheric Northern Annular Mode (NAM) index raising the question about the role of stratospheric driver on this tropospheric climate event. A set of 50 years long simulations by atmospheric general circulation model European Centre/Hamburg version 5 (ECHAM5) is carried out and the responses of the model to observed anomalies in stratospheric ozone (O3) and sea surface temperatures (SST) separately and also the response to combined SST and O3 forcing (ALL) are analyzed. In all three experiments the response is characterized by a strengthening of stratospheric polar vortex in March–April. In the ALL experiment, this strengthening is followed by a significant, long-lasting shift of the tropospheric circulation toward a positive NAM phase and increased probability of occurrence of extremely positive NAM events. The combined effect of the O3 and SST forcings on the stratospheric circulation differs from the sum of the individual O3 and SST responses, most likely due to nonlinear effects, leading to a colder stratosphere in February–March. In the troposphere, the sum of the individual responses is comparable in magnitude to the ALL response, but the individual responses are delayed with respect to that in ALL. In summary, these results suggest that both ozone-induced stratospheric cooling and tropospheric forcing associated with the SST anomalies contributed to the record tropospheric climate anomalies observed in spring 2011.
机译:2011年春季创纪录的北极臭氧损失与对流层北环空模式(NAM)指数的创纪录正值一致,从而引发了有关平流层驱动因素在对流层气候事件中的作用的问题。通过大气总循环模型欧洲中心/汉堡第5版(ECHAM5)进行了长达50年的模拟,该模型分别对平流层臭氧(O3)和海面温度(SST)以及观测到的异常的响应分析了对SST和O3组合强迫(ALL)的响应。在所有三个实验中,响应均以3月至4月平流层极地涡旋增强为特征。在ALL实验中,在加强之后,对流层环流向NAM正相的方向发生了显着而持久的变化,并增加了发生NAM正事件的可能性。 O3和SST强迫对平流层环流的综合影响不同于单个O3和SST响应的总和,最有可能是由于非线性效应,导致2月至3月的平流层较冷。在对流层中,单个响应的总和在数量上与ALL响应相当,但是相对于ALL,单个响应的延迟。总之,这些结果表明,臭氧引起的平流层冷却和与SST异常相关的对流层强迫都促成了2011年春季观测到的对流层气候异常记录。

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