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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Evaluation of Regional CO_2 Mole Fractions in the ECMWF CAMS Real-Time Atmospheric Analysis and NOAA CarbonTracker Near-Real-Time Reanalysis With Airborne Observations FromACT-America Field Campaigns
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Evaluation of Regional CO_2 Mole Fractions in the ECMWF CAMS Real-Time Atmospheric Analysis and NOAA CarbonTracker Near-Real-Time Reanalysis With Airborne Observations FromACT-America Field Campaigns

机译:评估ECMWF CAMS中的区域CO_2摩尔分数实时大气分析和NOAA CarbonTracker近实时再分析空中观察来自美国野外活动

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摘要

This study systematically examines the regional uncertainties and biases in carbon dioxide (CO_2) mole fractions from two of the state-of-the-art global CO_2 analysis products, namely, the Copernicus Atmosphere Monitoring Service (CAMS) real-time atmospheric analysis from the European Centre for Medium-RangeWeather Forecasts (ECMWF) and the CarbonTracker Near-Real-Time (CT-NRT) reanalysis from the National Oceanic and Atmospheric Administration (NOAA), by evaluation against hundreds of hours of airborne in situ measurements from the summer 2016 and winter 2017 Atmospheric Carbon and Transport (ACT)-America field campaigns. Both the CAMS and CT-NRT analyses agree reasonably well with the independent ACT-America airborne CO_2 measurements in the free troposphere, with root-mean-square deviations (RMSDs) between analyses and observations generally between 1 and 2 ppm but show considerably larger uncertainties in the atmospheric boundary layer where the RMSDs exceed 8 ppm in the lowermost 1 km of the troposphere in summer. There are strong variations in accuracy and bias between seasons, and across three different subregions in the United States (Mid-Atlantic, Midwest, and South), with the largest uncertainties in the Mid-Atlantic region in summer. Overall, the RMSDs of the CAMS and CT-NRT analyses against airborne data are comparable to each other and largely consistent with the differences between the two analyses. The current study provides uncertainty estimates for both analysis products over North America and suggests that these two independent estimates can be used to approximate regional CO_2 analysis uncertainties. Both statistics are important in future studies in quantifying the uncertainties in regional CO_2 mole fraction and flux estimates.
机译:本研究系统地检查了二氧化碳(CO_2)摩尔分数中的区域的不确定性和偏差,即来自最先进的全局CO_2分析产品,即哥白大气氛监测服务(CAMS)实时大气分析欧洲中等地天气预报(ECMWF)中心和邻近实时(CT-NRT)的CarbonTracker从国家海洋和大气管理局(NOAA)进行了评估,通过评估2016年夏季的原位测量数百小时的空中和2017年冬季大气碳和运输(ACT)-AMERICA野外活动。凸轮和CT-NRT分析都与自由对流层中的独立行为 - 美国空气传播CO_2测量相加,在分析和观察之间的根本平均方偏差(RMSDS)通常在1到2 ppm之间,但显示出相当大的不确定性在大气边界层中,RMSDS在夏季逆流层最下面1公里处超过8ppm。季节之间的准确性和偏见有很大的变化,以及在美国三个不同次区域(中西部,中西部,中西部和南部)之间,夏季中大西洋中部地区最大的不确定性。总的来说,凸轮的RMSD和CT-NRT对空气传播数据分析的分析彼此相当,并且在很大程度上与两种分析之间的差异一致。目前的研究为北美的分析产品提供了不确定性估计,并表明这两个独立估计可用于近似区域CO_2分析不确定性。两个统计数据在如何在量化区域CO_2摩尔分数和助焊剂估算中的不确定性的研究中都很重要。

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  • 作者单位

    Department of Meteorology and Atmospheric Science The Pennsylvania State University University Park PA USA;

    Department of Earth Atmospheric and Planetary Sciences Massachusetts Institute of Technology Cambridge MA USA;

    Department of Meteorology and Atmospheric Science The Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science The Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science The Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science The Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science The Pennsylvania State University University Park PA USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Evaluation; Regional CO_2; Mole Fractions;

    机译:评估;区域CO_2;鼹鼠分数;

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