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首页> 外文期刊>Atmospheric Measurement Techniques >The SPARC water vapour assessment II: profile-to-profile comparisons of stratospheric and lower mesospheric water vapour data sets obtained from satellites
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The SPARC water vapour assessment II: profile-to-profile comparisons of stratospheric and lower mesospheric water vapour data sets obtained from satellites

机译:SPARC水蒸气评估II:从卫星获得的平流层和下凹部水蒸气数据组的剖面性比较

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摘要

Within the framework of the second SPARC (Stratosphere-troposphere Processes And their Role in Climate) water vapour assessment (WAVAS-II), profile-to-profile comparisons of stratospheric and lower mesospheric water vapour were performed by considering 33 data sets derived from satellite observations of 15 different instruments. These comparisons aimed to provide a picture of the typical biases and drifts in the observational database and to identify data-set-specific problems. The observational database typically exhibits the largest biases below 70 hPa, both in absolute and relative terms. The smallest biases are often found between 50 and 5 hPa. Typically, they range from 0.25 to 0.5 ppmv (5% to 10%) in this altitude region, based on the 50% percentile over the different comparison results. Higher up, the biases increase with altitude overall but this general behaviour is accompanied by considerable variations. Characteristic values vary between 0.3 and 1 ppmv (4% to 20%). Obvious data-set-specific bias issues are found for a number of data sets. In our work we performed a drift analysis for data sets overlapping for a period of at least 36 months. This assessment shows a wide range of drifts among the different data sets that are statistically significant at the 2 sigma uncertainty level. In general, the smallest drifts are found in the altitude range between about 30 and 10 hPa. Histograms considering results from all altitudes indicate the largest occurrence for drifts between 0.05 and 0.3 ppmvdecade(-1). Comparisons of our drift estimates to those derived from comparisons of zonal mean time series only exhibit statistically significant differences in slightly more than 3% of the comparisons. Hence, drift estimates from profile-to-profile and zonal mean time series comparisons are largely interchangeable. As for the biases, a number of data sets exhibit prominent drift issues. In our analyses we found that the large number of MIPAS data sets included in the assessment affects our general results as well as the bias summaries we provide for the individual data sets. This is because these data sets exhibit a relative similarity with respect to the remaining data sets, despite the fact that they are based on different measurement modes and different processors implementing different retrieval choices. Because of that, we have by default considered an aggregation of the comparison results obtained from MIPAS data sets. Results without this aggregation are provided on multiple occasions to characterise the effects due to the numerous MIPAS data sets. Among other effects, they cause a reduction of the typical biases in the observational database.
机译:在第二个SPARC的框架内(平流层 - 对流层过程及其在气候中的作用)水蒸气评估(波动-II),通过考虑衍生自卫星的33个数据集来进行平坦散和较低的态化水蒸气的轮廓型和较低的态化水蒸气的概况比较观察15种不同的乐器。这些比较旨在提供典型的偏置和漂移在观察数据库中的图片并识别特定于数据特定的问题。观察数据库通常在绝对和相对术语中表现出低于70 HPA的最大偏差。最小的偏差通常在50到5 HPA之间找到。通常,基于不同比较结果的50%百分位,它们在该高度区域中的0.25%至0.5ppmV(5%至10%)。更高,偏见随着高度的总体而增加,但这种一般行为伴随着相当大的变化。特征值在0.3和1 ppmV之间变化(4%至20%)。为多个数据集找到明显的数据集特定的偏置问题。在我们的工作中,我们对数据集进行了漂移分析,重叠至少36个月。该评估显示了在2个Sigma不确定性水平的不同数据集中的广泛漂移。通常,在大约30和10 HPA之间的高度范围内发现最小漂移。考虑所有高度结果的直方图表示0.05和0.3 ppmvDecade(-1)之间的漂移的最大情况。我们的漂移估计与来自Zonal平均时间序列的比较的人的比较只表现出统计上显着的差异略高于比较的3%。因此,来自概况的漂移估计和分层平均时间序列比较的估计在很大程度上是可互换的。至于偏差,许多数据集表现出突出的漂移问题。在我们的分析中,我们发现评估中包含的大量MIPA数据集会影响我们的一般结果以及我们为各个数据集提供的偏差摘要。这是因为这些数据集关于剩余数据集的相对相似度,尽管它们基于不同的测量模式和实现不同检索选择的不同处理器。因此,我们有默认认为从MIPAS数据集获得的比较结果的聚合。没有这种聚合的结果是在多次提供的,以表征由于众多MIPA数据集引起的效果。在其他效果之外,它们导致观察数据库中的典型偏差减少。

著录项

  • 来源
    《Atmospheric Measurement Techniques》 |2019年第5期|共40页
  • 作者单位

    Karlsruhe Inst Technol Inst Meteorol &

    Climate Res Hermann von Helmholtz Pl 1 D-76344 Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Meteorol &

    Climate Res Hermann von Helmholtz Pl 1 D-76344 Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Meteorol &

    Climate Res Hermann von Helmholtz Pl 1 D-76344 Leopoldshafen Germany;

    Univ Toronto Dept Phys 60 St George St Toronto ON M5S 1A7 Canada;

    UVSQ IPSL CNRS LATMOS 11 Blvd dAlembert F-78280 Guyancourt France;

    ACRI ST 260 Route Pin Montard F-06904 Sophia Antipolis France;

    Hampton Univ Ctr Atmospher Sci 23 Tyler St Hampton VA 23669 USA;

    NASA Langley Res Ctr 21 Langley Blvd Hampton VA 23681 USA;

    Natl Ctr Atmospher Res Atmospher Chem Observat &

    Modeling Lab POB 3000 Boulder CO 80307 USA;

    Natl Inst Environm Studies Ctr Global Environm Res 16-2 Onogawa Tsukuba Ibaraki 3058506 Japan;

    Environm &

    Climate Change Canada 4905 Dufferin St Toronto ON M3H 5T4 Canada;

    CNR ISAC Via Gobetti 101 I-40129 Bologna Italy;

    CNR ISAC Via Gobetti 101 I-40129 Bologna Italy;

    Consiglio Nazl Ric IFAC CNR Ist Fis Applicata Via Madonna Piano 10 I-50019 Sesto Fiorentino Italy;

    CSIC IAA E-18008 Granada Spain;

    Karlsruhe Inst Technol Inst Meteorol &

    Climate Res Hermann von Helmholtz Pl 1 D-76344 Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Meteorol &

    Climate Res Hermann von Helmholtz Pl 1 D-76344 Leopoldshafen Germany;

    Univ Oxford Atmospher Phys Clarendon Lab Parks Rd Oxford OX1 3PU England;

    Jet Prop Lab 4800 Oak Grove Dr Pasadena CA 91109 USA;

    Naval Res Lab Remote Sensing Div 4555 Overlook Ave Southwest Washington DC 20375 USA;

    NASA Langley Res Ctr 21 Langley Blvd Hampton VA 23681 USA;

    NASA Langley Res Ctr 21 Langley Blvd Hampton VA 23681 USA;

    Univ Bremen Inst Environm Phys Otto Hahn Allee 1 D-28334 Bremen Germany;

    Univ Bremen Inst Environm Phys Otto Hahn Allee 1 D-28334 Bremen Germany;

    Univ Bremen Inst Environm Phys Otto Hahn Allee 1 D-28334 Bremen Germany;

    Univ Bremen Inst Environm Phys Otto Hahn Allee 1 D-28334 Bremen Germany;

    Univ Bremen Inst Environm Phys Otto Hahn Allee 1 D-28334 Bremen Germany;

    Univ Bremen Inst Environm Phys Otto Hahn Allee 1 D-28334 Bremen Germany;

    Kyoto Sangyo Univ Fac Sci Kita Ku Kyoto 6038555 Japan;

    Natl Inst Informat &

    Commun Technol NICT THz Res Ctr 20 4-2-1 Nukui Kita Koganei Tokyo 1848795 Japan;

    Chalmers Univ Technol Dept Space Earth &

    Environm Horsalsvagen 11 S-41296 Gothenburg Sweden;

    Chalmers Univ Technol Dept Space Earth &

    Environm Horsalsvagen 11 S-41296 Gothenburg Sweden;

    Chalmers Univ Technol Dept Space Earth &

    Environm Horsalsvagen 11 S-41296 Gothenburg Sweden;

    GATS Inc 65 South Main St 5 Driggs ID 83442 USA;

    Stockholm Univ Dept Phys Geog Svante Arrhenius Vag 8 S-10691 Stockholm Sweden;

    NOAA Earth Syst Res Lab Global Monitoring Div 325 Broadway Boulder CO 80305 USA;

    NOAA Earth Syst Res Lab Global Monitoring Div 325 Broadway Boulder CO 80305 USA;

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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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