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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Longitudinal variations of temperature and ozone profiles observed by MIPAS during the Antarctic stratosphere sudden warming of 2002
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Longitudinal variations of temperature and ozone profiles observed by MIPAS during the Antarctic stratosphere sudden warming of 2002

机译:纵向变化的温度和臭氧概要MIPAS观察到在南极平流层突然变暖的2002

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摘要

The temperature and ozone volume mixing ratio (VMR) profiles measured by the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) on ENVISAT are used to study the unusual Antarctic major stratospheric warming of 2002. The observed zonal mean temperatures show rapid poleward increase and remarkable reversal of the latitudinal gradients at 35 km or below in several days. The highest temperature increase is of 50 K or more. The zonal mean ozone VMRs also increase poleward and have maximum values of 7 ppmv in a wide region between 20 and 40 km at latitudes south of 40°S. Temperature amplitudes of zonal wave number 1 to 3 exhibit a double-peaked structure with peaks near 25 km and 35 km. The ozone waves in the lower stratosphere are generally in phase with the corresponding temperature waves. At the onset of the warming, the wave 1 amplitudes drastically increase at 60°S–80°S, reaching maxima of ~20 K for the temperature and ~2 ppmv for the ozone VMR. Significant wave 3 amplitudes are also observed with maximum of 14–18 K and 1–1.5 ppmv for temperature and ozone VMR, respectively. The wave 3 amplitudes are larger than those of wave 2 by nearly a factor of 2 immediately before and after the polar vortex split. The large-amplitude wave 1 and 3 disturbances break down in 1 or 2 days, and the wave 2 variations are enhanced and attain amplitudes comparable to those of wave 1 and 3, resulting in an apparent wave 2 warming event. These results are consistent with other observations and suggest the importance of wave 3 forcing in the major warming.
机译:温度和臭氧体积混合比由迈克尔逊(VMR)测量资料为被动大气探测干涉仪(MIPAS)环境用于研究不同寻常2002年南极主要平流层变暖。观察到的纬向平均温度显示快速向极增加和惊人的逆转纬向梯度在35公里或以下好几天。50 K或更多。增加向极和最大值的7ppmv广泛地区20至40公里纬度以南40°S。的纬向波数1到3展览25公里附近的山峰和双峰结构35公里。通常在与相应的阶段温度波。第一波振幅大大增加60°- 80°年代,达到~ 20 K的最大值温度和臭氧VMR ~ 2 ppmv。3有效波振幅也观察到最多14 - 18 K和1 - 1.5 ppmv温度和臭氧VMR,分别。3比波振幅更大2前后近2倍极地漩涡分裂。1和3干扰分解在1或2天,和第二波变化增强和实现同等的振幅波1和3,导致一个明显的波2变暖事件。这些结果是一致的意见和建议的重要性波3在主要的变暖迫使。

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