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A connection from stratospheric ozone to El Niño-Southern Oscillation

机译:平流层臭氧与厄尔尼诺-南方涛动的联系

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摘要

We use reanalysis and observational data to link the lower stratospheric ozone regulation of the ultraviolet radiation (UV-B) component of solar energy to ENSO modulation. Results indicate that during ENSO extremes, the Walker Circulation (WC) and Brewer Dobson Circulation are related to lower stratospheric ozone alterations east of the date line over the Pacific. These in turn are linked to upper tropospheric anomalous dipole temperature patterns on either side of the equator. The ensuing changes in geopotential height values do not only drive equatorial zonal wind anomalies in the upper troposphere that are reversed at the equatorial surface, but also impact on the intensity of the South Pacific High circulation. When the WC is enhanced, a La Nina type of circulation is indentified but if the circulation cell is inverted, the anomalous circulation results in an El Nino. Though the anomalous lower stratospheric ozone peaks during austral summer it is significant throughout the ENSO lifecycle. Hence, ENSO structure and variability are mainly linked to the lower stratospheric ozone instigated internal dynamics of the Pacific atmosphere. The ENSO forcing most likely originates from the ozone related regulation of the incoming solar UV-B radiation rather than the Pacific Ocean surface.
机译:我们使用重新分析和观测数据将平流层臭氧的较低能量调节与ENSO调制的太阳能的紫外线(UV-B)分量相关。结果表明,在ENSO极端事件中,沃克环流(WC)和布鲁尔·多布森环流与太平洋日期线以东的低平流层臭氧变化有关。这些反过来又与赤道两侧的对流层异常偶极子温度模式有关。随之而来的地势高度值的变化不仅会推动对流层上空的赤道纬向风异常在赤道面逆转,而且还会影响南太平洋高空环流的强度。当WC增强时,可以确定为La Nina类型的循环,但是如果循环单元反转,则异常循环将导致El Nino。尽管在夏季南方平流层较低的臭氧峰值处于异常状态,但在整个ENSO生命周期中都非常重要。因此,ENSO的结构和变异性主要与平流层中较低的臭氧激发的太平洋大气内部动力有关。 ENSO强迫最有可能源自对入射的太阳UV-B辐射的臭氧相关调节,而不是太平洋表面。

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