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CH 4 and CO 2 IPDA Lidar Measurements During the Comet 2018 Airborne Field Campaign

机译:CH 4 和co 2 IPDA LIDAR测量过程中的彗星2018 Airborne Field运动期间

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Installed onboard the German research aircraft HALO, the integrated-path differential-absorption (IPDA) lidar CHARM-F measures weighted vertical columns of both greenhouse gases (GHG) below the aircraft and along its flight track, aiming at high accuracy and precision. Results will be shown from the deployment during the CoMet field campaign that was carried out in spring 2018, with its main focus on one of the major European hot spots in methane emissions: the Upper Silesian Coal Basin (USCB) in Poland. First analyses reveal a measurement precision of below 0.5% for 20-km averages and also low bias, which was assessed by comparison with in-situ instruments. The measurements flights were designed to capture individual CH_(4)and CO_(2)plumes from e.g. coal mine venting and coal-fired power plants, respectively, but also to measure large and regional scale GHG gradients and to provide comparisons with the Total Carbon Column Observing Network (TCCON). Many other different instruments, both airborne and ground-based, complemented the lidar measurements to provide a comprehensive dataset for model analyses. CHARM-F also acts as the airborne demonstrator for MERLIN, the “Methane Remote Lidar Mission”, conducted by the German and French space agencies, DLR and CNES, with launch foreseen in ~ 2024. In this context, the airborne lidar data are likewise important for mission support such as for e.g. algorithm development and improvement and, moreover, the CoMet mission was also an important step for MERLIN validation preparation.
机译:安装在德国研究飞机晕,集成路径差动吸收(IPDA)LIDAR Charm-F在飞机下方的温室气体(GHG)的加权垂直柱均衡,沿着其飞行轨道,旨在高精度和精度。结果将在2018年春季开展的彗星野战活动期间从部署中显示,主要关注甲烷排放中的主要欧洲热点之一:波兰上部Silesian煤盆(USCB)。首先分析显示20公里平均值低于0.5%的测量精度,并且还通过与原位仪器进行比较来评估的低偏差。测量航班设计用于捕获来自例如各自的CH_(4)和CO_(2)羽毛。煤矿通风和燃煤发电厂,也分别测量大型和区域规模的温室气体梯度,并提供与总碳柱观察网络(TCCON)的比较。许多其他不同的仪器,空气传播和基于地面,补充了LIDAR测量,为模型分析提供了全面的数据集。 Charm-F也是德国和法国空间机构,DLR和CNES进行的“Methane Remote Lidar Mission”,DLR和CNES的机载示范,在〜2024中预见。在这方面,空中激光雷达数据同样对于例如例如算法开发和改进,而且,彗星任务也是Merlin验证准备的一个重要步骤。

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