首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >First in situ temperature measurements in the summer mesosphere at very high latitudes (78 degrees N) - art. no. 8448
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First in situ temperature measurements in the summer mesosphere at very high latitudes (78 degrees N) - art. no. 8448

机译:夏季中层高纬度(北纬78度)的首次原位温度测量-艺术。没有。 8448

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1] A total of 24 temperature profiles from similar to92 to 55 km were obtained from falling sphere flights in Longyearbyen (Svalbard, 78degreesN) from 16 July to 14 September 2001. The thermal structure of the upper mesosphere during the summer season ( here from mid-July to 23 August) is characterized by very low temperatures and little variability. The mesopause temperature decreases slightly from similar to130 K in mid-July to 126-128 K in late July/beginning of August. The mesopause altitude in summer is similar to89 km. Compared to 10degrees further south (69degreesN, Andoya), the mesopause temperature is very similar in mid-July but is significantly colder by 6-8 K in the second half of July and in August. Part of this difference ( especially in late August) is due to the later transition from summer to winter in Longyearbyen. The mesopause altitude is higher by approximately 1 km at Longyearbyen compared to Andoya. At 82 km, the temperature in summer is very close to 150 K, very similar to other Arctic and Antarctic stations ("equithermal submesopause''). The temperatures in the upper mesosphere are significantly lower compared to COSPAR International Reference Atmosphere (CIRA, 1986) by up to 20 K. Assuming model water vapor concentrations, we derived the degree of saturation of water vapor ( S). In summer, there is an extended altitude range ( 82 92 km) with supersaturation (S > 1). Occasionally, very high supersaturation was derived ( S > 100). Our temperature measurements are in general agreement with the occurrence morphology of polar mesosphere summer echoes (PMSE). However, double layered structures frequently observed in PMSEs are not a prominent feature of the temperatures in the upper mesosphere. [References: 25
机译:1]从2001年7月16日至9月14日在朗伊尔城(斯瓦尔巴特群岛,北纬78度)的下降层飞行中获得了从92到55 km相似的24个温度曲线。 -7月至8月23日)的特点是温度非常低,变化很小。绝经温度从7月中旬的130 K略降至7月下旬/ 8月初的126-128K。夏季的中年海拔高度约为89公里。与更南的10度(北纬69度,安多亚)相比,中年绝经温度在7月中旬非常相似,但在7月下半月和8月明显降低了6-8K。这种差异的部分原因(尤其是8月下旬)是由于朗伊尔城从夏季到冬季的后期过渡。与安多亚市相比,朗伊尔城的中年更年期海拔高约1公里。在82 km处,夏季的温度非常接近150 K,与其他北极和南极气象站(“等温亚中子绝热”)非常相似。与COSPAR国际参考大气(CIRA,1986年)相比,中上层温度明显更低。 ),最高可达20 K.假设模型中的水蒸气浓度,我们得出水蒸气的饱和度(S)。夏季,海拔高度范围(82 92 km)出现过饱和(S> 1)。得到了很高的过饱和度(S> 100),我们的温度测量结果与极地中层夏季回波(PMSE)的发生形态基本吻合,但是,在PMSE中经常观察到的双层结构并不是该温度的显着特征。上半球[参考:25

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