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首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >Quasi-decadal variations in total ozone content, wind velocity, temperature, and geopotential height over the Arosa station (Switzerland)
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Quasi-decadal variations in total ozone content, wind velocity, temperature, and geopotential height over the Arosa station (Switzerland)

机译:瑞士阿罗萨站的臭氧总量,风速,温度和地势高度的准年代际变化

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We present the results of the analysis of the phase relationships between the quasi-decadal variations (QDVs) (in the range from 8 to 13 years) in the total ozone content (TOC) at the Arosa station for 1932-2012 and a number of meteorological parameters: monthly mean values of temperature, meridional and zonal components of wind velocity, and geopotential heights for isobaric surfaces in the layer of 10-925 hPa over the Arosa station using the Fourier methods and composite and cross-wavelet analysis. It has been shown that the phase relationships of the QDVs in the TOC and meteorological parameters with an 11-year cycle of solar activity change in time and height; starting with cycle 24 of solar activity (2008-2010), the variations in the TOC and a number of meteorological parameters occur in almost counter phase with the variations in solar activity. The periods of the maximum growth rate of the temperature at isobaric surfaces 50-100 hPa nearly correspond to the TOC's maximum periods, and the periods of the maximum temperature correspond the periods of the decrease of the peak TOC rate. The highest correlation coefficients between the meridional wind velocity and temperature are observed at 50 hPa at positive and negative delays of similar to 27 months. The times of the maxima (minima) of the QDVs in the meridional wind velocity nearly correspond to the periods of the maximum amplification (attenuation) rate of the temperature of the QDVs. The QDVs in the geopotential heights of isobaric surfaces fall behind the variations in the TOC by an average of 1.5 years everywhere except in the lower troposphere. In general, the periods of variations in the TOC and meteorological parameters in the range of 8-13 years are smaller than the period of variations in the level of solar activity.
机译:我们介绍了1932-2012年Arosa站总臭氧含量(TOC)的准年代际变化(QDV)(8至13年)之间的相位关系分析结果以及气象参数:使用傅立叶方法以及合成和交叉小波分析,在阿罗萨站10-925 hPa层中等压面的温度,子午和纬向分量的月平均温度,风势高度以及地势高度。研究表明,在太阳活动11年的周期中,TOC中QDV与气象参数的相位关系随时间和高度发生变化。从太阳活动的周期24(2008-2010)开始,TOC和许多气象参数的变化几乎与太阳活动的变化相反。等压面50-100 hPa处温度的最大增长率的周期几乎对应于TOC的最大周期,而最高温度的周期对应于TOC峰值速率下降的周期。在50 hPa时,经约27个月的正负延迟,子午风速与温度之间的相关系数最高。 QDV在子午风速中的最大值(最小值)时间几乎对应于QDV温度的最大放大(衰减)速率的周期。在对流层低层以外的其他地方,等压面地势高度的QDV平均落后于TOC变化1.5年。通常,TOC和气象参数在8-13年范围内的变化周期小于太阳活动水平的变化周期。

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