首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Airborne limb-imaging measurements of temperature, HNO3, O3, ClONO2, H2O and CFC-12 during the Arctic winter 2015/2016: characterization, in?situ validation and comparison to Aura/MLS
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Airborne limb-imaging measurements of temperature, HNO3, O3, ClONO2, H2O and CFC-12 during the Arctic winter 2015/2016: characterization, in?situ validation and comparison to Aura/MLS

机译:2015/2016的北极冬季期间,空气传播的肢体成像测量温度,HNO3,O3,CLONO2,H2O和CFC-12:表征,进入?原位验证和Aura / MLS的比较

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The Gimballed Limb Observer for Radiance Imaging of the Atmosphere (GLORIA) was operated on board the German High Altitude and Long Range Research Aircraft (HALO) during the PGS (POLSTRACC/GW-LCYCLE/SALSA) aircraft campaigns in the Arctic winter 2015/2016. Research flights were conducted from 17 December 2015 until 18 March 2016 within 25–87°N, 80°W–30°E. From the GLORIA infrared limb-emission measurements, two-dimensional cross sections of temperature, HNO3, O3, ClONO2, H2O and CFC-12 are retrieved. During 15 scientific flights of the PGS campaigns the GLORIA instrument measured more than 15000 atmospheric profiles at high spectral resolution. Dependent on flight altitude and tropospheric cloud cover, the profiles retrieved from the measurements typically range between 5 and 14km, and vertical resolutions between 400 and 1000m are achieved. The estimated total (random and systematic) 1σ errors are in the range of 1 to 2K for temperature and 10% to 20% relative error for the discussed trace gases. Comparisons to in?situ instruments deployed on board HALO have been performed. Over all flights of this campaign the median differences and median absolute deviations between in?situ and GLORIA observations are -0.75K±0.88K for temperature, -0.03ppbv±0.85ppbv for HNO3, -3.5ppbv±116.8ppbv for O3, -15.4pptv±102.8pptv for ClONO2, -0.13ppmv±0.63ppmv for H2O and -19.8pptv±46.9pptv for CFC-12. Seventy-three percent of these differences are within twice the combined estimated errors of the cross-compared instruments. Events with larger deviations are explained by atmospheric variability and different sampling characteristics of the instruments. Additionally, comparisons of GLORIA HNO3 and O3 with measurements of the Aura Microwave Limb Sounder (MLS) instrument show highly consistent structures in trace gas distributions and illustrate the potential of the high-spectral-resolution limb-imaging GLORIA observations for resolving narrow mesoscale structures in the upper troposphere and lower stratosphere (UTLS).
机译:在PGS(Polstacc / GW-Lcycle / Salsa)飞机活动2015/2016的PGS(Polstacc / GW-Lcycle / Salsa)飞机活动期间,在德国高海拔和长期研究飞机(Halo)上运行了GiMballed肢体观察者(Gloria)的辐射成像。 。研究航班于2015年12月17日进行,直至2016年3月18日在25-87°N,80°W-30°E中。从Gloria红外肢体排放测量,检索温度,HNO3,O3,CLONO 2,H 2 O和CFC-12的二维横截面。在15个科学的PGS航班期间,Gloria仪器以高光谱分辨率测量了超过15000个大气型材。依赖于飞行高度和对流层云盖,从测量中检索的曲线通常在5到14km之间的范围内,并且实现了400到1000m的垂直分辨率。估计的总(随机和系统)1σ误差在1至2K的温度范围内,对于所讨论的痕量气体的相对误差为10%至20%。已经进行了对比较的比较,已经进行了船上光环的仪器。在这一活动的所有航班中,温度和格洛丽亚观测之间的中位数和中位绝对偏差为-0.75k±0.88k,用于HNO3,-3.5ppbv±0.85ppbv,-3.5ppbv±116.8ppbv for O3,-15.4用于CLONO2,-0.13ppmv±0.63ppmv的pptv±102.8pptv和cfc-12的-19.8pptv±46.9pptv。七十三种差异是跨比较仪器的组合估计误差的两倍。具有较大偏差的事件是通过大气可变性和仪器的不同采样特性来解释。另外,Gloria HNO3和O3的比较,测量Aura微波跛行声音(MLS)仪器在痕量气体分布中显示出高度一致的结构,并说明了用于解决窄的Mescle结构的高光谱分辨率肢体成像Gloria观测的可能性上层和较低的平流层(UTL)。
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