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ESA’s Space-Based Doppler Wind Lidar Mission Aeolus – First Wind and Aerosol Product Assessment Results

机译:ESA的基于空间的多普勒风光激光LIDAR Mission Aeolus - 第一风和气溶胶产品评估结果

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The European Space Agency (ESA) wind mission, Aeolus, hosts the first space-based Doppler Wind Lidar (DWL) world-wide. The primary mission objective is to demonstrate the DWL technique for measuring wind profiles from space, intended for assimilation in Numerical Weather Prediction (NWP) models. The wind observations will also be used to advance atmospheric dynamics research and for evaluation of climate models. Mission spin-off products are profiles of cloud and aerosol optical properties. Aeolus was launched on 22 August 2018, and the Atmospheric LAser Doppler INstrument (Aladin) instrument switch-on was completed with first high energy output in wind mode on 4 September 2018 [1], [2]. The on-ground data processing facility worked excellent, allowing L2 product output in near-real-time from the start of the mission. First results from the wind profile product (L2B) assessment show that the winds are of very high quality, with random errors in the free Troposphere within (cloud/aerosol backscatter winds: 2.1 m/s) and larger (molecular backscatter winds: 4.3 m/s) than the requirements (2.5 m/s), but still allowing significant positive impact in first preliminary NWP impact experiments. The higher than expected random errors at the time of writing are amongst others due to a lower instrument out-and input photon budget than designed. The instrument calibration is working well, and some of the data processing steps are currently being refined to allow to fully correct instrument alignment related drifts and elevated detector dark currents causing biases in the first data product version. The optical properties spin-off product (L2A) is being compared e.g. to NWP model clouds, air quality model forecasts, and collocated ground-based observations. Features including optically thick and thin particle and hydrometeor layers are clearly identified and are being validated.
机译:欧洲航天局(ESA)风神使命,AEOLUS,举办全球第一个基于空间的多普勒风潮(DWL)。主要任务目标是展示用于测量来自空间的风谱的DWL技术,用于在数值天气预报(NWP)模型中的同化。风析还将用于推进大气动力学研究和评估气候模型。任务拆卸产品是云和气溶胶光学性质的型材。 Aeolus于2018年8月22日推出,大气激光多普勒仪器(Aladin)仪器接通开关于2018年9月4日在风模式下进行第一高能量输出[1],[2]。地面数据处理设施非常好,允许L2产品从任务开始时近乎实时输出。风谱产品(L2B)评估的首先结果表明,风质量非常高,在自由对流层内(云/气溶胶反散越风:2.1米/秒)和较大(分子反向散射风:4.3米) / s)比要求(2.5米/秒),但仍然允许在第一初步NWP影响实验中产生显着的积极影响。由于较低的仪器出和输入的光子预算,写作时的预期随机误差高于其撰写的随机误差。仪器校准运行良好,目前正在精制一些数据处理步骤,以便完全正确地纠正仪器对齐相关的漂移和升高的探测器暗电流,导致第一数据产品版本中的偏置。光学性质分解产品(L2A)均进行比较。到NWP模型云,空气质量模型预测,以及并置地基观测。清楚地识别出包括光学厚和薄颗粒和水流仪层的特征,并进行了验证。

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