期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Trend of Antarctic Ozone Hole and Its Influencing Factors 被引量:1
1
作者 BIAN Lin-Gen LIN Zhong +2 位作者 ZHENG Xiang-Dong MA yong-Feng LU Long-Hua 《Advances in Climate Change Research》 2012年第2期68-75,共8页
Influencing factors, and variations and trends of Antarctic ozone hole in recent decades are analyzed, and sudden change processes of ozone at Zhongshan station and the effect of atmospheric dynamic processes on ozone... Influencing factors, and variations and trends of Antarctic ozone hole in recent decades are analyzed, and sudden change processes of ozone at Zhongshan station and the effect of atmospheric dynamic processes on ozone changes are also discussed by using the satellite ozone data and the ground-measured ozone data at two Antarctic stations as well as the NCEP/NCAR reanalysis data. The results show that equivalent effective stratospheric chlorine (EESC) and stratospheric temperature are two important factors influencing the ozone hole. The column ozone at Zhongshan and Syowa stations is significantly related with EESC and stratospheric temperature, which means that even though the two stations are both located on the edge of the ozone hole, EESC and stratospheric temperature still played a very important role in column ozone changes, and mean while verifies that EESC is applicable on the coast of east Antarctic continent. Decadal changes in EESC are similar with those of the ozone hole, and inter-annual variations of ozone are closely related with stratospheric temperature. Based on the relation of EESC and ozone hole size, it can be projected that the ozone hole size will gradually reduce to the 1980's level from 2010 to around 2070. Of course there might exist many uncertainties in the projection, which therefore needs to be further studied. 展开更多
关键词 antarctic ozone hole equivalent effective stratospheric chlorine (EESC) stratospheric temperature TREND
下载PDF
Numerical Experiment for the Impact of the Ozone Hole over Antarctica on the Global Climate 被引量:2
2
作者 陈月娟 张弘 毕训强 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 1998年第3期18-29,共12页
A numerical experiment has been carried out with IAP (Institute of Atmospheric Physics) 9-layer general circulation model to investigate the influence of the Antarctic Ozone Hole on the global climate. The results sho... A numerical experiment has been carried out with IAP (Institute of Atmospheric Physics) 9-layer general circulation model to investigate the influence of the Antarctic Ozone Hole on the global climate. The results show that the changes of total amount of ozone over higher latitude and polar region of the Southern Hemisphere affect not only the climate in the Southern Hemisphere, but also that in the Northern Hemisphere significantly. In the next spring, although the total amount of ozone over Antarctica has returned to the normal value, the influences of Ozone Hole still exist. 展开更多
关键词 antarctic ozone hole CLIMATE Numerical simulation
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部