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首页> 外文期刊>Atmospheric chemistry and physics >Quasi-coincident observations of polar stratospheric clouds by ground-based lidar and CALIOP at Concordia (Dome C, Antarctica) from 2014 to 2018
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Quasi-coincident observations of polar stratospheric clouds by ground-based lidar and CALIOP at Concordia (Dome C, Antarctica) from 2014 to 2018

机译:2014年至2018年,基于地面潮汐和Caliop的地基激光杆和卡利普的准巧合观察到2014年至2018年

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Polar stratospheric clouds (PSCs) have been observed from 2014 to 2018 from the lidar observatory at the Antarctic Concordia station (Dome C), included as a primary station in the NDACC (Network for Detection of Atmospheric Climate Change). Many of these measurements have been performed in coincidence with overpasses of the satellite-borne CALIOP (Cloud Aerosol Lidar with Orthogonal Polarization) lidar, in order to perform a comparison in terms of PSC detection and composition classification. Good agreement has been obtained, despite intrinsic differences in observation geometry and data sampling. This study reports, to our knowledge, the most extensive comparison of PSC observations by ground-based and satellite-borne lidars. The PSCs observed by the ground-based lidar and CALIOP form a complementary and congruent dataset and allow us to study the seasonal and interannual variations in PSC occurrences at Dome C. Moreover, a strong correlation with the formation temperature of NAT (nitric acid trihydrate), T NAT , calculated from local temperature, pressure, and H 2 O and HNO 3 concentrations is shown. PSCs appear at Dome C at the beginning of June up to 26?km and start to disappear in the second half of August, when the local temperatures start to rise above T NAT . Rare PSC observations in September coincide with colder air masses below 18?km.
机译:从2014年到2018年从南极协议站(圆顶C)的LIDAR天文台从2014年到2018年开始观察到极地平流层云(PSC),包括在NDACC的主要站(用于检测大气气候变化的网络)。这些测量中的许多测量符合与卫星传统的卡利波(云气溶胶激光雷达具有正交极化)LIDAR的立交流进行,以便在PSC检测和组成分类方面进行比较。尽管观察几何和数据采样的内在差异,已经获得了良好的协议。本研究报告了我们的知识,通过地面和卫星传承的Lidars对PSC观测的最广泛比较。由地面的激光雷达和卡利普观察的PSCS形成互补和全体数据集,并允许我们研究圆顶C的PSC出现的季节性和续际变化。此外,与NAT的形成温度强烈相关(硝酸三水合物)从局部温度,压力和H 2 O和HNO 3浓度计算的T NAT。当局部温度开始超过T NAT上升时,PSC在6月初出现在圆顶C,最高可达26千米,开始在8月下旬开始消失。 9月份罕见的PSC观察与低于18 km以下的较冷的空气群。

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