Chinese Soil Moisture Observation Network and Time Series Data Set for High Resolution Satellite Applications

High-quality ground observation networks are an important basis for scientific research. Here, an automatic soil observation network for high-resolution satellite applications in China (SONTE-China) was established to measure both pixel- and multilayer-based soil moisture and temperature. SONTE-Chin...

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Veröffentlicht in:Scientific data 2023-07, Vol.10 (1), p.424-424, Article 424
Hauptverfasser: Wang, Chunmei, Gu, Xingfa, Zhou, Xiang, Yang, Jian, Yu, Tao, Tao, Zui, Gao, Hailiang, Liu, Qiyue, Zhan, Yulin, Wei, Xiangqin, Li, Juan, Zhang, Lili, Li, Lei, Li, Bingze, Feng, Zhuangzhuang, Wang, Xigang, Fu, Ruoxi, Zheng, Xingming, Wang, Chunnuan, Sun, Yuan, Li, Bin, Dong, Wen
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Sprache:eng
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Zusammenfassung:High-quality ground observation networks are an important basis for scientific research. Here, an automatic soil observation network for high-resolution satellite applications in China (SONTE-China) was established to measure both pixel- and multilayer-based soil moisture and temperature. SONTE-China is distributed across 17 field observation stations with a variety of ecosystems, covering both dry and wet zones. In this paper, the average root mean squared error (RMSE) of station-based soil moisture for well-characterized SONTE-China sites is 0.027 m 3 /m 3 (0.014~0.057 m 3 /m 3 ) following calibration for specific soil properties. The temporal and spatial characteristics of the observed soil moisture and temperature in SONTE-China conform to the geographical location, seasonality and rainfall of each station. The time series Sentinel-1 C-band radar signal and soil moisture show strong correlations, and the RMSE of the estimated soil moisture from radar data was lower than 0.05 m 3 /m 3 for the Guyuan and Minqin stations. SONTE-China is a soil moisture retrieval algorithm that can validate soil moisture products and provide basic data for weather forecasting, flood forecasting, agricultural drought monitoring and water resource management.
ISSN:2052-4463
2052-4463
DOI:10.1038/s41597-023-02234-8