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Investigations of the middle atmospheric thermal structure and oscillations over sub-tropical regions in the Northern and Southern Hemispheres

机译:北半球和南半球副热带地区中层大气热结构及其振荡的研究

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The temperature retrieved from the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) onboard Thermosphere Ionosphere Mesosphere Energetics and Dynamics (TIMED) satellite during January 2002 to September 2015 are used in this study to delineate the differences of middle atmospheric thermal structure in the Northern Hemisphere (NH) and Southern Hemisphere (SH). Two stations namely Mt. Abu (24.59A degrees N, 72.70A degrees E) in NH and Reunion Island (21.11A degrees S, 55.53A degrees E) in SH are chosen over sub-tropical regions. Temperature climatology from SABER observations suggests that stratopause is warmer, and upper mesosphere is cooler in NH as compared to SH. Three atmospheric models are used to understand the monthly thermal structure differences for different altitudes. Moreover, semi-annual, annual and quasi-biennial oscillations are studied using Lomb Scargle Periodogram and Wavelet transform techniques. Over NH, summer and winter season are warmer (similar to 4 K) and cooler (similar to 3 K) respectively in stratosphere as compared to SH. It is important to note here that Mt. Abu temperature is warmer (similar to 9 K) than Reunion Island in winter but in summer season Mt. Abu temperature is cooler in upper mesosphere and above mesosphere NH shows warming. Results show that annual oscillations are dominated in both hemisphere as compared to semi-annual and quasi-biennial oscillations. In upper mesosphere, strength of annual oscillations is substantial in NH, while semi-annual oscillations are stronger in SH. Wavelet analyses found that annual oscillations are significant in NH near mesopause, while semi-annual oscillations are strengthening in SH.
机译:本研究使用2002年1月至2015年9月使用热辐射电离层中层能量与动力学(TIMED)卫星上的宽带发射辐射法(SABER)从大气探测获得的温度来描绘北部中层大气热结构的差异半球(NH)和南半球(SH)。两个站即山。在亚热带地区,选择新罕布什尔州的阿布(北纬24.59A度,东经72.70A度)和SH的留尼汪岛(南纬21.11A度,东经55.53A)。 SABER观测的温度气候学表明,与SH相比,NH的层间温度更高,上部中层温度更低。使用三个大气模型来了解不同高度的月度热结构差异。此外,使用Lomb Scargle周期图和小波变换技术研究了半年,年度和准两年期振荡。与南半球相比,在北半球,平流层的夏季和冬季分别较暖和(约4 K)和较凉(约3 K)。在此必须注意的是,冬天,但在夏季,阿布的温度比留尼汪岛的温度要高(约9 K)。上部中层的阿布温度较低,而在中间层以上的NH显示变暖。结果表明,与半年振荡和准两年振荡相比,半球的年振荡占主导。在上部中层,NH的年振荡强度很大,而SH的半年振荡强度更大。小波分析发现,在中绝经期附近的NH中,年振荡很明显,而在SH中,半年振荡正在增强。

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