A long term half-hourly eddy covariance dataset of consistently processed CO2 and H2O Fluxes from the Tibetan Alpine Steppe at Nam Co (2005 - 2019)

A long term hourly eddy covariance dataset of consistently processed CO2 and H2O Fluxes from the Tibetan Alpine Steppe at Nam Co (2005 - 2019)


The data set contains nearly 15 years of eddy covariance data from an alpine steppe ecosystem on the central Tibetan Plateau.The data was processed following standardized quality control methods to allow for comparability between the different years of our record and with other data sets. To ensure meaningful estimates of ecosystem atmosphere exchange, careful application of the following correction procedures and analyses was necessary: (1) Due to the remote location, continuous maintenance of the eddy covariance (EC) system was not always possible, so that cleaning and calibration of the sensors was performed irregularly. Furthermore, the high proportion of bare soil and high wind speeds led to accumulation of dirt in the measurement path of the infrared gas analyzer (IRGA). The installation of the sensor in such a challenging environment resulted in a considerable drift in CO2 and H2O gas density measurements. If not accounted for, this concentration bias may distort the estimation of the carbon uptake. We applied a modified drift correction procedure following Fratini et al. (2014) which, instead of a linear interpolation between calibration dates, uses the CO2 concentration measurements from the Mt. Waliguan atmospheric observatory as reference time series. (2) We applied rigorous quality filtering of the calculated fluxes to retain only fluxes which represent actual physical processes. (3) During the long measurement period, there were several buildings constructed in the near vicinity of the EC system. We investigated the influence of these obstacles on the turbulent flow regime to identify fluxes with uncertain land cover contribution and exclude them from subsequent computations. (4) We calculated the de-facto standard correction for instrument surface heating during cold conditions (hereafter called sensor self heating correction) following Burba et al. (2008) and a revision of the original method following Frank and Massman (2020). (5)Subsequently, we applied the traditional and widely used gap filling procedure following Reichstein et al. (2005) to provide a more complete overview of the annual net ecosystem CO2 exchange.(6) We estimated the flux uncertainty by calculating the random flux error (RE) following Finkelstein and Sims (2001) and by using the standard deviation of the fluxes used for gap filling(NEE_fsd) as a measure for spatial and temporal variation.


数据文件命名方式和使用方法

File name: NAMORS_EC_2005-2019.csv. The file contains the EddyPro full_output (https://www.licor.com/env/support/EddyPro/topics/output-files-full-output.html) and biomet data, quality flags for quality filtering and fetch filtering, the CO2 fluxes corrected for sensor self heating effects, random uncertainty measures as propagated via WPL correction and the REddyProc gap filling results (https://www.bgc-jena.mpg.de/bgi/index.php/Services/REddyProcWebOutput).
File name: NAMORS_EC_2005-2019_varnames_units.csv. The file contains the variable descriptions and physical units for the above mentioned dataset.
Version 2 with enhanced calculations and data processing after peer-review(https://essd.copernicus.org/preprints/essd-2020-63/#discussion). The file "NAMORS_EC_2005-2019_v2.txt" contains the EddyProfull_output (https://www.licor.com/env/support/EddyPro/topics/output-files-full-output.html)and biomet data, quality flags for quality filtering, the CO2fluxes corrected for sensor self heating effects and the REddyProcgap filling results(https://www.bgc-jena.mpg.de/bgi/index.php/Services/REddyProcWebOutput).The file "NAMORS_EC_2005-2019_varnames_units_v2.txt" contains thevariable descriptions and physical units for the above mentioneddataset. The uploaded files are tab-delimited .txt files with"-9999" representing missing data.


本数据要求的引用方式 查看数据引用帮助 数据引用必读
数据的引用

Felix Nieberding, 马耀明, Christian Wille, Gerardo Fratini, Magnus Ole Asmussen, 王玉阳, 马伟强, Torsten Sachs. (2020). A long term half-hourly eddy covariance dataset of consistently processed CO2 and H2O Fluxes from the Tibetan Alpine Steppe at Nam Co (2005 - 2019). 时空三极环境大数据平台, DOI: 10.11888/Meteoro.tpdc.270333. CSTR: 18406.11.Meteoro.tpdc.270333.
[Felix, N., Ma, Y., Cristian, W., Gerardo, F., Magnus Ole Asmussen., Yuyang, W., Ma, W., Torsten, S. (2020). A long term hourly eddy covariance dataset of consistently processed CO2 and H2O Fluxes from the Tibetan Alpine Steppe at Nam Co (2005 - 2019). A Big Earth Data Platform for Three Poles, DOI: 10.11888/Meteoro.tpdc.270333. CSTR: 18406.11.Meteoro.tpdc.270333. ] (下载引用: RIS格式 | RIS英文格式 | Bibtex格式 | Bibtex英文格式 )

文章的引用

1. Nieberding, F., Wille, C., Fratini, G., Asmussen, M. O., Wang, Y., Ma, Y., & Sachs, T. (2020). A long-term (2005–2019) eddy covariance data set of CO2 and H2O fluxes from the Tibetan alpine steppe. Earth System Science Data. 12. 2705-2724. 10.5194/essd-12-2705-2020.( 查看 | Bibtex格式)

2. Ma, Y.M., Kang, S.C., Zhu, L.P., Xu, B.Q., Tian, L.D., & Yao, T.D. (2008). Tibetan Observation and Research Platform- Atmosphere–land interaction over a heterogeneous landscape, Bulletin of the American Meteorological Society. 89, 1487–1492. doi:10.1175/2008BAMS2545.1.( 查看 | Bibtex格式)

3. Ma, Y.M., Ma, W.Q., Zhong, L., Hu, Z., Li, M., Zhu, Z., et al. (2017). Monitoring and Modeling the Tibetan Plateau’s climate system and its impact on East Asia, Scientific Reports, 7, 44574, doi:10.1038/srep44574.( 查看 | 下载 | Bibtex格式)

使用本数据时必须引用“文章的引用”中列出的文献,并进行数据的引用


参考文献

1.Burba, G. G., McDermitt, D. K., Grelle, A., Anderson, D., and XU, L. (2008). Addressing the influence of instrument surface heat exchange on the measurements of CO 2 flux from open-path gas analyzers, Global Change Biology, 14, 1854–1876, https://doi.org/10.1111/j.1365-2486.2008.01606.x. (查看 )

2.Fratini, G., McDermitt, D. K., and Papale, D. (2004). Eddy-covariance flux errors due to biases in gas concentration measurements: origins, quantification and correction, Biogeosciences, 11, 1037–1051, https://doi.org/10.5194/bg-11-1037-2014. (查看 )

3.Reichstein, M., Falge, E., Baldocchi, D., Papale, D., Aubinet, M., Berbigier, P., Bernhofer, C., Buchmann, N., Gilmanov, T., Granier, A., Grunwald, T., Havrankova, K., Ilvesniemi, H., Janous, D., Knohl, A., Laurila, T., Lohila, A., Loustau, D., Matteucci, G., Meyers, T., Miglietta, F., Ourcival, J.-m., Pumpanen, J., Rambal, S., Rotenberg, E., Sanz, M., Tenhunen, J., Seufert, G., Vaccari, F., Vesala, T., Yakir, D., and valentini, R. (20050. On the separation of net ecosystem exchange into assimilation and ecosystem respiration: review and improved algorithm, Global Change Biology, 11, 1424–1439, https://doi.org/10.1111/j.1365-2486.2005.001002.x. (查看 )


资助项目

泛第三极环境变化与绿色丝绸之路建设专项(XDA20000000) (项目编号:XDA20000000) Pan-Third Pole Environment Study for a Green Silk Road-A CAS Strategic Priority A Program

第二次青藏高原综合科学考察研究 Second Tibetan Plateau Scientific Expedition Program

数据使用声明

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License: This work is licensed under an Attribution 4.0 International (CC BY 4.0)


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数据细节
  • 时间分辨率: Hourly
  • 空间分辨率: 10m - 100m
  • 大小: 250 MB
  • 浏览: 6145 次
  • 下载量: 584 次
  • 共享方式: 开放获取
  • 数据时间范围: 2005-12-09 至 2019-09-12
  • 数据时间描述: 2005-12-04 22:30 CST
  • 元数据更新时间: 2022-04-15
联系信息
Felix Nieberding   马耀明   Christian Wille   Gerardo Fratini   Magnus Ole Asmussen   王玉阳   马伟强   Torsten Sachs  

分发方: 时空三极环境大数据平台

Email: poles@itpcas.ac.cn

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