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Comparison of soil moisture products from microwave remote sensing, land model, and reanalysis using global ground observations
Yuanhong Deng;  Shijie Wang;  Xiaoyong Bai;  Luhua Wu;  Yue Cao;  Huiwen Li;  Mingming Wang;  Chaojun Li;  Yujie Yang;  Zeyin Hu;  Shiqi Tian;  Qian Lu
2020
发表期刊Hydrological Processes
卷号34期号:3页码:836-851
摘要

High-quality soil moisture (SM) datasets are in great demand for climate, hydrology, and other fields, but detailed evaluation of SM products from various sources is scarce. Thus, using 670 SM stations worldwide, we evaluated and compared SM products from microwave remote sensing [Advanced Microwave Scanning Radiometer for the Earth Observing System (AMSR-E) (C- and X-bands) and European Space Agency's Climate Change Initiative (ESA CCI)], land surface model [Global Land Data Assimilation System (GLDAS)], and reanalysis data [ECMWF Re-Analysis-Interim (ERA-Interim) and National Centers for Environmental Prediction (NCEP)] under different time scales and various climates and land covers. We find that: (a) ESA CCI and GLDAS have the closest values to the in situ SM on the annual scale, whereas others overestimate the SM; ERA-Interim (averaged R = 0.58) and ESA CCI (averaged R = 0.54) correlate best with the in situ data, while GLDAS performs worst. (b) Overall, the deviations of each product vary in seasons. ESA CCI and ERA-Interim products are closer to the in situ SM at seasonal scales, and AMSR-E and NCEP perform worst in December-February and June-August, respectively. (c) Except for NCEP and ERA-Interim, others can well reflect the intermonthly variation of the in situ SM. (d) Under various climates and land covers, AMSR-E products are less effective in cold climates, whereas GLDAS and NCEP products perform poorly in arid or temperate and dry climates. Moreover, the Bias and R of each SM product differ obviously under different forest types, especially the AMSR-E products. In summary, SM from ESA CCI is the best, followed by ERA-Interim product, and precipitation is an important auxiliary data for selecting high-quality SM stations and improving the accuracy of SM from GLDAS. These results can provide a reference for improving the accuracy of the above SM products.

关键词Amsr-e Dataassimilation In-situ Tibetan Plateau Retrieval Validation Impact Ascat Precipitation Performance
收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/42920512-1/10146
专题环境地球化学国家重点实验室
作者单位1.Chinese Acad Sci, Inst Geochem, State Key Lab Environm Geochem, 99 Lincheng West Rd, Guiyang 550081, Guizhou, Peoples R China
2.Univ Chinese Acad Sci, Coll Earth & Planetary Sci, Beijing, Peoples R China
3.Chinese Acad Sci, Puding Karst Ecosyst Observat & Res Stn, Anshun, Peoples R China
4.Guizhou Normal Univ, Sch Geog & Environm Sci, Guiyang, Guizhou, Peoples R China
5.Guizhou Univ, Coll Resource & Environm, Guiyang, Guizhou, Peoples R China
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GB/T 7714
Yuanhong Deng;Shijie Wang;Xiaoyong Bai;Luhua Wu;Yue Cao;Huiwen Li;Mingming Wang;Chaojun Li;Yujie Yang;Zeyin Hu;Shiqi Tian;Qian Lu. Comparison of soil moisture products from microwave remote sensing, land model, and reanalysis using global ground observations[J]. Hydrological Processes,2020,34(3):836-851.
APA Yuanhong Deng;Shijie Wang;Xiaoyong Bai;Luhua Wu;Yue Cao;Huiwen Li;Mingming Wang;Chaojun Li;Yujie Yang;Zeyin Hu;Shiqi Tian;Qian Lu.(2020).Comparison of soil moisture products from microwave remote sensing, land model, and reanalysis using global ground observations.Hydrological Processes,34(3),836-851.
MLA Yuanhong Deng;Shijie Wang;Xiaoyong Bai;Luhua Wu;Yue Cao;Huiwen Li;Mingming Wang;Chaojun Li;Yujie Yang;Zeyin Hu;Shiqi Tian;Qian Lu."Comparison of soil moisture products from microwave remote sensing, land model, and reanalysis using global ground observations".Hydrological Processes 34.3(2020):836-851.
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