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首页> 外文期刊>Atmospheric Measurement Techniques >Atmospheric composition and thermodynamic retrievals from the ARIES airborne FTS system - Part 1: Technical aspects and simulated capability
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Atmospheric composition and thermodynamic retrievals from the ARIES airborne FTS system - Part 1: Technical aspects and simulated capability

机译:ARIES机载FTS系统的大气成分和热力学反演-第1部分:技术方面和模拟能力

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In this study we present an assessment of the retrieval capability of the Airborne Research Interferometer Evaluation System (ARIES): an airborne remote-sensing Fourier transform spectrometer (FTS) operated on the UK Facility for Airborne Atmospheric Measurement (FAAM) aircraft. Simulated maximum a posteriori retrievals of partial column trace gas concentrations, and thermodynamic vertical profiles throughout the troposphere and planetary boundary layer have been performed here for simulated infrared spectra representative of the ARIES system operating in the nadir-viewing geometry. We also describe the operational and technical aspects of the pre-processing necessary for routine retrieval from the FAAM platform and the selection and construction of a priori information. As exemplars of the capability of the ARIES retrieval system, simulated retrievals of temperature, water vapour (H_2O), carbon monoxide (CO), ozone (O_3), and methane (CH_4), and their corresponding sources of error and potential vertical sensitivity, are discussed for ARIES scenes across typical global environments. The maximum Degrees of Freedom for Signal (DOFS) for the retrievals, assuming a flight altitude of 7 km, were 3.99, 2.97, 0.85, 0.96, and 1.45 for temperature, H_2O, CO, O_3, and CH4, respectively, for the a priori constraints specified. Retrievals of temperature display significant vertical sensitivity (DOFS in the range 2.6 to 4.0 across the altitude range) as well as excellent simulated accuracy, with the vertical sensitivity for H_2O also extending to lower altitudes (DOFS ranging from 1.6 to 3.0). It was found that the maximum sensitivity for CO, O_3, and CH_4 was approximately 1-2 km below the simulated altitudes in all scenarios. Comparisons of retrieved and simulated-truth partial atmospheric columns are used to assess the capability of the ARIES measurement system. Maximum mean biases (and bias standard deviations) in partial columns (i.e. below aircraft total columns) were found to be +0.06 (±0.02 at lσ)%, +3.95 (±3.11)%, +3.74 (±2.97)%, -8.26 (±4.64)%, and +3.01 (±2.61)% for temperature, H_2O, CO, O_3, and CH_4, respectively, illustrating that the retrieval system performs well compared to an optimal scheme. The maximum total a posteriori retrieval errors across the partial columns were also calculated, and were found to be 0.20, 22.57, 18.22, 17.61, and 16.42 % for temperature, H_2O, CO, O_3, and CH_4, respectively.
机译:在这项研究中,我们对机载研究型干涉仪评估系统(ARIES)的检索能力进行了评估:在英国机载大气测量(FAAM)飞机上运行的机载遥感傅里叶变换光谱仪(FTS)。在此已对代表在天底观察几何中运行的ARIES系统的模拟红外光谱进行了模拟的最大后验取局部柱痕量气体浓度的后验分析,以及整个对流层和行星边界层的热力学垂直剖面。我们还描述了从FAAM平台进行例行检索以及先验信息的选择和构建所必需的预处理的操作和技术方面。作为ARIES检索系统功能的示例,对温度,水蒸气(H_2O),一氧化碳(CO),臭氧(O_3)和甲烷(CH_4)及其相应的误差源和潜在的垂直灵敏度进行了模拟检索,针对典型的全球环境中的ARIES场景进行了讨论。假设最大飞行高度为7 km,则取回信号的最大信号自由度(DOFS)分别为温度,温度H_2O,CO,O_3和CH4的3.99、2.97、0.85、0.96和1.45。指定先验约束。温度的检索显示出显着的垂直灵敏度(整个高度范围内的DOFS在2.6至4.0范围内)以及出色的模拟精度,而H_2O的垂直灵敏度也扩展到了较低的高度(DOFS范围在1.6至3.0之间)。发现在所有情况下,CO,O_3和CH_4的最大灵敏度都比模拟高度低约1-2 km。取回的和模拟的真实部分大气柱的比较用于评估ARIES测量系统的能力。发现部分列(即,飞机总列下方)的最大平均偏差(和偏差标准偏差)为+0.06(在lσ处为±0.02)%,+ 3.95(±3.11)%,+ 3.74(±2.97)%,-温度,H_2O,CO,O_3和CH_4的温度分别为8.26(±4.64)%和+3.01(±2.61)%,说明与最佳方案相比,检索系统的性能很好。还计算了整个分列的最大后验总检索误差,发现温度,H_2O,CO,O_3和CH_4分别为0.20%,22.57%,18.22%,17.61%和16.42%。

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