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Is Antarctic climate most sensitive to ozone depletion in the middle or lower stratosphere?

机译:南极平流层中层或下层对南极的臭氧消耗最敏感吗?

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Antarctic stratospheric ozone depletion has been associated with an observed downward trend in tropospheric geopotential height and temperature. Stratospheric ozone depletion peaks in October November, whereas tropospheric trends are largest in December-January, concurrent with maximum ozone changes close to the tropopause. Surface temperatures are most sensitive to ozone loss near the tropopause, therefore it has been suggested that the observed tropospheric response is forced mainly by ozone depletion in the lower stratosphere. In this study the climate response to ozone depletion exclusively below 164 hPa is simulated using HadSM3-L64, and compared with simulations in which ozone depletion is prescribed exclusively above 164 hPa. Results indicate that the tropospheric response is dominated by ozone changes above 164 hPa, with ozone changes in the lowermost stratosphere playing an insignificant role. A tropospheric response is also seen in fall/winter which agrees well with observations and has not been found in modeling studies previously.
机译:南极平流层臭氧消耗与对流层地势高度和温度的下降趋势有关。平流层臭氧消耗量在11月的10月达到峰值,而对流层的趋势在12月至1月最大,同时最大的臭氧变化接近对流层顶。表面温度对对流层顶附近的臭氧损失最敏感,因此建议对流层的观测响应主要是由低平流层中的臭氧消耗引起的。在这项研究中,使用HadSM3-L64模拟了仅在164 hPa以下对臭氧消耗的气候响应,并与仅在164 hPa以上规定消耗臭氧的模拟进行了比较。结果表明,对流层响应主要受高于164 hPa的臭氧变化的影响,平流层最低层的臭氧变化起着微不足道的作用。在秋/冬还可以看到对流层响应,这与观测结果非常吻合,以前在模型研究中还没有发现。

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