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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Observational characteristics of double tropopauses
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Observational characteristics of double tropopauses

机译:观察特点,双tropopauses

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Temperature profiles in the extratropics often exhibit multiple tropopauses (as defined using the lapse rate definition). In this work we study the observational characteristics of double tropopauses based on radiosondes, ERA40 reanalysis, and GPS radio occultation temperature profiles. Double tropopauses are associated with a characteristic break in the thermal tropopause near the subtropical jet, wherein the low latitude (tropical) tropopause extends to higher latitudes, overlying the lower tropopause; this behavior can extend to polar latitudes. Tropopause statistics derived from radiosondes and GPS data show good agreement, and GPS data allow mapping of double tropopause characteristics over the globe. The occurrence frequency shows a strong seasonal variation over NH midlatitudes, with ~50–70% occurrence in profiles during winter, and a small fraction (~10%) over most of the hemisphere during summer (with the exception of a localized maximum over the poleward flank of the Asian monsoon anticyclone). SH midlatitude statistics show a smaller seasonal variation, with occurrence frequencies of ~30–50% over the year (maximum during winter). Over the extratropics, the occurrence frequency is substantially higher for cyclonic circulation systems. Few double tropopauses are observed in the tropics. Ozone measurements from balloons and satellites show that profiles with double tropopauses exhibit systematically less ozone in the lower stratosphere than those with a single tropopause. Together with the meteorological data, the ozone observations identify double tropopauses as regions of enhanced transport from the tropics to higher latitudes above the subtropical jet cores.
机译:温度经常extratropics中的概要信息表现出多个对流层顶(定义使用递减率定义)。两倍的观测特征基于无线电探空仪对流层顶,ERA40再分析,和GPS无线电掩星的温度配置文件。在热对流层顶的特点在亚热带飞机附近,其中低纬度(热带)对流层顶延伸到更高纬度,上覆低对流层顶;行为可以扩展极地纬度。对流层顶的统计数据来自无线电探空仪和GPS数据显示良好的协议,和GPS数据允许双重对流层顶的映射在全球各地的特点。频率显示了强劲的季节性变化NH情理之中,发生在~ 50 - 70%在冬天,和一小部分(~ 10%)大部分的半球在夏季(除了局部最大亚洲季风的向南极的侧面反气旋)。较小的季节性变化,发生全年的频率~ 30 - 50%(最大值在冬天)。出现频率更高气旋环流系统。对流层中观察到热带地区。气球和卫星的测量显示概要文件与对流层顶展览的两倍系统地减少臭氧的低平流层比单个对流层顶。结合气象数据,臭氧观察识别双重对流层顶从热带地区增强运输高纬度地区亚热带射流核心。

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