Multiyear in-situ L-band microwave radiometry of land surface processes on the Tibetan Plateau (2016-2019)
- MeteoData: Meteorological data contain air temperature, precipitation amount, four components radiation measurement (i.e., up- and down-welling shortwave and longwave radiations);
- SMST_LC: Soil moisture and soil temperature data at different depth;
- SMST_Z: Soil moisture and soil temperature at different depth;
- ELBARA-III TB: ELABRA-III measured brightness temperature TB at different incidence angle for H and V polarizations;
- LAI_IN SITU: In-situ measured leaf area index;
- MODIS LAI_HANTS: Processed MODIS LAI using HANTS algorithm;
- MODIS_LAI_8daily: 8-daily raw data extracted from MCD15A2H - MODIS/Terra+Aqua Leaf Area Index (500 m resolution);
- SMAP TB: SMAP L1C brightness temperature TB over Maqu ELABRA-III site;
- Field_Unit: The description and unit for each field in each sheet;
- FluxDataAllField: The data measured by Integrated Eddy Covariance system (EC150 analyzer, CSAT3A anemometer, MP155A relative humidity and temperature, and 109-L air temperature) (Campbell scientific, USA).
-Soil physical properties dataset over the Tibetan Plateau: https://data.4tu.nl/articles/Soil_Hydraulic_and_Thermal_Properties_for_Land_Surface_Modelling_over_the_Tibetan_Plateau_version_1_/12721418/2
Bob, S., Wen, J. (2020). Multiyear in-situ L-band microwave radiometry of land surface processes on the Tibetan Plateau (2016-2019). A Big Earth Data Platform for Three Poles, DOI: 10.6084/m9.figshare.12058038.v1. (Download the reference: RIS | Bibtex )
Related Literatures:1. Su, Z., Wen, J., Zeng, Y. et al. (2020). Multiyear in-situ L-band microwave radiometry of land surface processes on the Tibetan Plateau. Sci Data 7, 317. https://doi.org/10.1038/s41597-020-00657-1( View Details | Bibtex)
Using this data, the data citation is required to be referenced and the related literatures are suggested to be cited.
1.Su, Z., Wen, J., Dente, L., Van Der Velde, R., Wang, L., Ma, Y., Yang, K., Hu, Z. (2011). The Tibetan Plateau observatory of plateau scale soil moisture and soil temperature (Tibet-Obs) for quantifying uncertainties in coarse resolution satellite and model products. Hydrology & Earth System Sciences. 2011 Jul 1, 15(7). (View Details | Download )
2.Zheng, D., Wang, X., Van Der Velde, R., Zeng, Y., Wen, J., Wang, Z., Schwank, M., Ferrazzoli, P., and Su, Z. (2017). L-Band Microwave Emission of Soil Freeze-Thaw Process in the Third Pole Environment, IEEE Transactions on Geoscience and Remote Sensing, 55(9), 5324-5338. (View Details | Download )
3.Zhao, H., Zeng, Y., Lv, S., Su, Z. (2018). Analysis of soil hydraulic and thermal properties for land surface modeling over the Tibetan Plateau. Earth system science data. 2018 Jul 1, 10(2), 1031. (View Details | Download )
4.Zheng, D., Li, X., Wang, X., Wang, Z., Wen, J., van der Velde, R., Schwank, M., & Su, Z. (2019). Sampling depth of L-band radiometer measurements of soil moisture and freeze-thaw dynamics on the Tibetan Plateau, Remote Sensing of Environment, 226, 16-25. (View Details | Download )
ESA ELBARA-II/III Loan Agreement EOP-SM/2895/TC-tc
ESA MOST Dragon IV Program (Monitoring Water and Energy Cycles at Climate Scale in the Third Pole Environment)
Netherlands Organization for Scientific Research under Project ALW-GO/14-29
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License: This work is licensed under an Attribution 4.0 International (CC BY 4.0)
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