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The evolution of zonally asymmetric austral ozone in a chemistry-climate model

机译:化学气候模型中的Zonally非对称澳洲臭氧的演变

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Asymmetry in the Southern Hemisphere stratospheric ozone hole is important due to both direct radiative heating and its effect on dynamics. It is also a strong indicator of the underlying quality of the stratospheric dynamics of a climate model. We investigate the simulation of the zonal asymmetry in ozone in the NIWA-UKCA atmosphere-ocean chemistry-climate model using elliptical diagnostics, a methodology used for the first time in this subject area. During spring, the region most depleted in ozone is displaced from the pole toward South America based on ERA-Interim and the model output. The model correctly simulates the direction of this displacement but significantly underestimates its magnitude. The model shows that as ozone becomes increasingly depleted over the late 20th century this asymmetry in the ozone distribution moves west, before moving east as polar ozone recovers over the course of the 21st century. Comparison with model runs in which ozone-depleting substances are held fixed at pre-ozone-hole levels shows that this shift is primarily a function of the magnitude of ozone depletion, although increases in greenhouse gases also have some effect.
机译:由于直接辐射加热及其对动态的影响,南半球平流层臭氧孔中的不对称性很重要。它也是气候模型的平流层动力学的潜在质量的强大指标。我们使用椭圆诊断研究了NiWA-UKCA大气 - 海洋化学 - 气候模型中臭氧的臭氧的模拟,这是第一次在这个主题领域使用的方法。在春天,基于ERA临时和模型输出,臭氧最耗尽的地区从杆子朝向南美洲流离失所。该模型正确模拟了这种位移的方向,但显着低估了其幅度。该模型表明,由于臭氧在20世纪末越来越耗尽,这在臭氧分布的不对称下,西方向西移动,因为极地臭氧在21世纪的过程中恢复。与臭氧耗尽物质固定在臭氧孔水平固定的模型运行的比较表明,这种偏移主要是臭氧耗尽幅度的函数,尽管温室气体的增加也有一些效果。

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