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首页> 外文期刊>Journal of Climate >The impact of stratospheric ozone recovery on tropopause height trends.
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The impact of stratospheric ozone recovery on tropopause height trends.

机译:平流层臭氧恢复对对流层顶高度趋势的影响。

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摘要

The evolution of the tropopause in the past, present, and future climate is examined by analyzing a set of long-term integrations with stratosphere-resolving chemistry climate models (CCMs). These CCMs have high vertical resolution near the tropopause, a model top located in the mesosphere or above, and, most important, fully interactive stratospheric chemistry. Using such CCM integrations, it is found that the tropopause pressure (height) will continue to decrease (increase) in the future, but with a trend weaker than that in the recent past. The reduction in the future tropopause trend is shown to be directly associated with stratospheric ozone recovery. A significant ozone recovery occurs in the Southern Hemisphere lower stratosphere of the CCMs, and this leads to a relative warming there that reduces the tropopause trend in the twenty-first century. The future tropopause trends predicted by the CCMs are considerably smaller than those predicted by the Intergovernmental Panel on Climate Change Fourth Assessment Report (AR4) models, especially in the southern high latitudes. This difference persists even when the CCMs are compared with the subset of the AR4 model integrations for which stratospheric ozone recovery was prescribed. These results suggest that a realistic representation of the stratospheric processes might be important for a reliable estimate of tropopause trends. The implications of these finding for the Southern Hemisphere climate change are also discussed.
机译:通过分析与平流层解析化学气候模型(CCM)进行的长期整合,检验了对流层顶过去,现在和未来气候的演变。这些CCM在对流层顶附近具有较高的垂直分辨率,位于中层以上的模型顶部,最重要的是完全互动的平流层化学。使用这种CCM积分,发现对流层顶压力(高度)将来将继续降低(增加),但趋势比最近的趋势要弱。未来对流层顶趋势的减少表明与平流层臭氧的回收直接相关。 CCM的南半球平流层下部发生了显着的臭氧恢复,这导致那里的相对变暖,从而降低了二十世纪对流层顶的趋势。 CCM预测的未来对流层顶趋势比政府间气候变化专门委员会第四次评估报告(AR4)模型所预测的趋势要小得多,特别是在南部高纬度地区。即使将CCM与规定平流层臭氧回收的AR4模型积分的子集进行比较,这种差异仍然存在。这些结果表明,平流层过程的真实表示对于对对流层顶趋势的可靠估计可能很重要。还讨论了这些发现对南半球气候变化的影响。

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