Six and one-half years of ozone data and temperature data are used to extend Geller et al.'s (1988) study comparing the transport of ozone to high latitudes in the Northern and Southern Hemispheres. In this earlier study, it was pointed out that the poleward transport of ozone varies annually in the Northern Hemisphere but has a marked semiannual behavior in the Southern Hemisphere. This earlier study covered the period from December 1978 to November 1982. Two and one-half additional years have now been analyzed so that the analysis now extends to July 1986. With this extended data set, the maximum rate of increase in total ozone is seen to occur in January in the Northern Hemisphere for all of the years investigated. In the Southern Hemisp...
International audiencePrevious studies have presented clear evidence that the Northern Hemisphere to...
Our quantitative understanding of natural tropospheric ozone concentrations is limited by the paucit...
The statistical relationship between springtime and summertime ozone over middle and polar latitudes...
The distribution of total column ozone is investigated, using data from the TOMS (Total Ozone Mappin...
249-255Using a statistical regression model, annual as well as seasonal trends in zonal mean total z...
Long-term ozone trends (percentage change) have been computed from 13 years of Nimbus/TOMS (Total Oz...
We examine the seasonal behavior of ozone by using measurements from various instruments including o...
Our quantitative understanding of natural tropospheric ozone concentrations is limited by the paucit...
The variability of atmospheric midlatitudinal ozone between 1980 and 2000 over the Southern Hemisphe...
International audiencePrevious studies have presented clear evidence that the Northern Hemisphere to...
Papers about ozone layer variability and related topics published in the U. S. S. R. from 1989 to 19...
International audienceThe present study focuses on the middle atmospheric ozone variability using 14...
This paper investigates isentropic ozone exchange between the extratropical lower stratosphere and t...
The locations of total ozone stations and of stratospheric ozone samplings were presented. The sampl...
This paper investigates isentropic ozone exchange between the extratropical lower stratosphere and t...
International audiencePrevious studies have presented clear evidence that the Northern Hemisphere to...
Our quantitative understanding of natural tropospheric ozone concentrations is limited by the paucit...
The statistical relationship between springtime and summertime ozone over middle and polar latitudes...
The distribution of total column ozone is investigated, using data from the TOMS (Total Ozone Mappin...
249-255Using a statistical regression model, annual as well as seasonal trends in zonal mean total z...
Long-term ozone trends (percentage change) have been computed from 13 years of Nimbus/TOMS (Total Oz...
We examine the seasonal behavior of ozone by using measurements from various instruments including o...
Our quantitative understanding of natural tropospheric ozone concentrations is limited by the paucit...
The variability of atmospheric midlatitudinal ozone between 1980 and 2000 over the Southern Hemisphe...
International audiencePrevious studies have presented clear evidence that the Northern Hemisphere to...
Papers about ozone layer variability and related topics published in the U. S. S. R. from 1989 to 19...
International audienceThe present study focuses on the middle atmospheric ozone variability using 14...
This paper investigates isentropic ozone exchange between the extratropical lower stratosphere and t...
The locations of total ozone stations and of stratospheric ozone samplings were presented. The sampl...
This paper investigates isentropic ozone exchange between the extratropical lower stratosphere and t...
International audiencePrevious studies have presented clear evidence that the Northern Hemisphere to...
Our quantitative understanding of natural tropospheric ozone concentrations is limited by the paucit...
The statistical relationship between springtime and summertime ozone over middle and polar latitudes...