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Building the COllaborative Carbon Column Observing Network (COCCON): long-term stability and ensemble performance of the EM27/SUN Fourier transform spectrometer

机译:建立协作碳柱观察网络(COCCON):EM27 / SUN傅里叶变换光谱仪的长期稳定性和集合性能

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摘要

In a 3.5-year long study, the long-term performance of a mobile, solar absorption Bruker EM27/SUN spectrometer, used for greenhouse gas observations, is checked with respect to a co-located reference Bruker IFS 125HR spectrometer, which is part of the Total Carbon Column Observing Network (TCCON). We find that the EM27/SUN is stable on timescales of several years; the drift per year between the EM27/SUN and the official TCCON product is 0.02 ppmv for XCO2 and 0.9 ppbv for XCH4, which is within the 1 sigma precision of the comparison, 0.6 ppmv for XCO2 and 4.3 ppbv for XCH4. The bias between the two data sets is 3.9 ppmv for XCO2 and 13.0 ppbv for XCH4. In order to avoid sensitivity-dependent artifacts, the EM27/SUN is also compared to a truncated IFS 125HR data set derived from full-resolution TCCON interferograms. The drift is 0.02 ppmv for XCO2 and 0.2 ppbv for XCH4 per year, with 1 sigma precisions of 0.4 ppmv for XCO2 and 1.4 ppbv for XCH4, respectively. The bias between the two data sets is 0.6 ppmv for XCO2 and 0.5 ppbv for XCH4. With the presented long-term stability, the EM27/SUN qualifies as an useful supplement to the existing TCCON network in remote areas. To achieve consistent performance, such an extension requires careful testing of any spectrometers involved by application of common quality assurance measures. One major aim of the COllaborative Carbon Column Observing Network (COCCON) infrastructure is to provide these services to all EM27/SUN operators. In the framework of COCCON development, the performance of an ensemble of 30 EM27/SUN spectrometers was tested and found to be very uniform, enhanced by the centralized inspection performed at the Karlsruhe Institute of Technology prior to deployment. Taking into account measured instrumental line shape parameters for each spectrometer, the resulting average bias across the ensemble with respect to the reference EM27/SUN used in the long-term study in XCO2 is 0.20 ppmv, while it is 0.8 ppbv for XCH4. The average standard deviation of the ensemble is 0.13 ppmv for XCO2 and 0.6 ppbv for XCH4. In addition to the robust metric based on absolute differences, we calculate the standard deviation among the empirical calibration factors. The resulting 2 sigma uncertainty is 0.6 ppmv for XCO2 and 2.2 ppbv for XCH4. As indicated by the executed long-term study on one device presented here, the remaining empirical calibration factor deduced for each individual instrument can be assumed constant over time. Therefore the application of these empirical factors is expected to further improve the EM27/SUN network conformity beyond the scatter among the empirical calibration factors reported above.
机译:在3.5年期间,对用于温室气体观测的移动,太阳能吸收布鲁克EM27 / SUN光谱仪的长期性能被同时检查了共同位于的参考BRUKER IFS 125HR光谱仪,这是一部分总碳柱观察网络(TCCON)。我们发现EM27 / SUN在几年的时间尺寸稳定; XCH4的XCO2和0.9PPBV的XCH4为0.02ppmV之间的每年漂移为0.02ppmv,这在比较的1 sigma精度范围内,XCO2和4.3ppbv为0.6ppmv。两个数据集之间的偏置为XCO2和13.0 PPBV为3.9ppmv。为了避免依赖敏感的工件,也将EM27 / SUN与从全分辨率TCCON干扰图导出的截断的IFS 125HR数据集进行了比较。 XCO2和0.2ppbv的漂移为每年0.02ppmv,分别为XCO2和1.4 ppbv的0.4ppmV的1 sigma精确。两个数据集之间的偏置为XCO2和0.5 PPBV的0.6ppmv。随着卓越的长期稳定性,EM27 / Sun有资格作为偏远地区现有TCCON网络的有用补充。为实现一致的性能,这种延伸需要仔细测试通过应用常见质量保证措施所涉及的任何光谱仪。协作碳柱观察网络(COCCON)基础设施的一个主要目标是向所有EM27 / Sun运营商提供这些服务。在CoCCON开发的框架中,测试了30个EM27 / SUN光谱仪的集合的性能,发现是非常均匀的,通过在部署之前在Karlsruhe技术研究所进行的集中检查增强。考虑到每个光谱仪的测量工具线形状参数,相对于在XCO2中长期研究中使用的参考EM27 / SUN的合奏的所得平均偏置为0.20ppmv,而Xch4为0.8 ppbv。合奏的平均标准偏差为XCO2和0.6 ppbv的0.13ppmv。除了基于绝对差异的鲁棒度量之外,我们还计算了经验校准因子之间的标准偏差。由此产生的2 sigma不确定度为XCH4的XCO2和2.2PPBV为0.6ppmV。如这里所示的一个设备的执行的长期研究所示,随着时间的推移,可以恒定地假设为每个单独仪器推断的剩余经验校准因子。因此,这些经验因素的应用预计将进一步改善超出上述实证校准因子的散射超出散射的EM27 /太阳网一致性。

著录项

  • 来源
    《Atmospheric Measurement Techniques》 |2019年第1期|共18页
  • 作者单位

    KIT Inst Meteorol &

    Climate Res IMK ASF Karlsruhe Germany;

    KIT Inst Meteorol &

    Climate Res IMK ASF Karlsruhe Germany;

    KIT Inst Meteorol &

    Climate Res IMK ASF Karlsruhe Germany;

    KIT Inst Meteorol &

    Climate Res IMK ASF Karlsruhe Germany;

    KIT Inst Meteorol &

    Climate Res IMK ASF Karlsruhe Germany;

    Bruker Opt GmbH Ettlingen Germany;

    Bruker Opt GmbH Ettlingen Germany;

    Univ Wollongong Fac Sci Med &

    Hlth Sch Earth Atmosphere &

    Life Sci Ctr Atmospher Chem Wollongong NSW Australia;

    Japan Aerosp Explorat Agcy Tsukuba Ibaraki Japan;

    Harvard Univ Sch Engn &

    Appl Sci Cambridge MA 02138 USA;

    Univ Leicester Dept Phys &

    Astron Leicester Leics England;

    Tech Univ Munich Environm Sensing &

    Modeling Munich Germany;

    Univ Nacl Autonoma Mexico Ctr Ciencias Atmosfera Mexico City DF Mexico;

    Natl Inst Environm Studies Ctr Global Environm Res Tsukuba Ibaraki Japan;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Hefei Anhui Peoples R China;

    Heidelberg Univ Inst Umweltphys Heidelberg Germany;

    Botswana Int Univ Sci &

    Technol Dept Earth &

    Environm Sci Gaborone Botswana;

    Natl Inst Res &

    Dev Optoelect INOE Magurele Romania;

    Univ Toronto Dept Phys Toronto ON Canada;

    Chinese Acad Sci Anhui Inst Opt &

    Fine Mech Hefei Anhui Peoples R China;

    Meteorol State Agcy Spain AEMET IARC Tenerife Spain;

    Lab Sci Climat &

    Environm Gif Sur Yvette France;

    Environm &

    Climate Change Canada Climate Res Div Toronto ON Canada;

    KIT Inst Meteorol &

    Climate Res IMK ASF Karlsruhe Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
  • 关键词

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