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Stratospheric ozone interannual variability (1995–2011) as observed by lidar and satellite at Mauna Loa Observatory, HI and Table Mountain Facility, CA

机译:Stratospheric臭氧续变性(1995-2011)由Lidar和卫星观察Mauna Loa天文台,嗨和桌山设施,加利福尼亚州

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The Jet Propulsion Laboratory (JPL) lidars, at the Mauna Loa Observatory, Hawaii (MLO, 19.5° N, 155.6° W) and the JPL Table Mountain Facility (TMF, California, 34.5° N, 117.7° W), have been measuring vertical profiles of stratospheric ozone routinely since the early 1990's and late-1980s respectively. Interannual variability of ozone above these two sites was investigated using a multi-linear regression analysis on the deseasonalised monthly mean lidar and satellite time-series at 1 km intervals between 20 and 45 km from January 1995 to April 2011, a period of low volcanic aerosol loading. Explanatory variables representing the 11 yr solar cycle, the El Ni?o Southern Oscillation, the Quasi-Biennial Oscillation, the Eliassen-Palm flux, and horizontal and vertical transport were used. A new proxy, the mid-latitude Ozone Depleting Gas Index, which shows a decrease with time as an outcome of the Montreal Protocol, was introduced and compared to the more commonly used linear trend method. The analysis also compares the lidar time-series and a merged time-series obtained from the space-borne Stratospheric Aerosol and Gas Experiment II, Halogen Occultation Experiment, and Aura-Microwave Limb Sounder instruments. The results from both lidar and satellite measurements are consistent with recent model simulations which propose changes in tropical upwelling. Additionally, at TMF the Ozone Depleting Gas Index explains as much variance as the Quasi-Biennial Oscillation in the upper stratosphere. Over the past 17 yr a diminishing downward trend in ozone was observed before 2000 and a net increase, and sign of ozone recovery, is observed after 2005. Our results which include dynamical proxies suggest possible coupling between horizontal transport and the 11 yr solar cycle response, although a dataset spanning a period longer than one solar cycle is needed to confirm this result.
机译:在Mauna Loa天文台,夏威夷(MLO,19.5°N,155.6°W)和JPL表山区设施(CALIFORNIA,34.5°N,117.7°W)的JAWII(MLO,19.5°N,155.6°W)。一直测量喷气机推进实验室(JPL)LIDARS自20世纪90年代初期和1980年代初期以来,平流层臭氧的垂直曲线分别。使用多线性回归分析在从1995年1月至2011年1月至2011年1月至2011年4月至45公里处以20至45公里的卫星时间序列的多线性回归分析来研究这两个站点上方的臭氧的续变性。装。代表11 YR太阳循环的解释性变量,使用EL Ni?O Southern振荡,准二年级振荡,Eliassen-Palm通量和水平和垂直传输。介绍了新的代理,其显示随时间作为蒙特利尔方案的结果的减少,并与更常用的线性趋势方法相比。分析还比较了LIDAR时间序列和从空间的平坦气溶胶气溶胶和天然气实验II,卤素弥补实验和光环微波测漏器仪器获得的合并时间系列。 LIDAR和卫星测量的结果与最近的模型模拟一致,这提出了热带上升的变化。另外,在TMF时,臭氧耗尽气体指数解释了对上层层中的准双年振荡的差异。在过去的17年里,在2000年之前观察到臭氧的下降趋势,并在2005年之前观察到净增加和臭氧恢复的迹象。我们包括动态代理的结果表明水平传输与11年太阳循环响应之间可能的耦合但是,尽管需要长时间的数据集超过一个太阳循环来确认此结果。

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