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Yansong Li, Yaning Chen, Yapeng Chen, Weili Duan, Jiayou Wang and Xu Wang
Global changes in drought and wetness and their future trends in arid regions have recently become a major focus of research attention. The Tarim River Basin (TRB) in Xinjiang, China, is among the most climate-sensitive regions in the world. This study u...
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Xianwei Wang, Huijiao Chen, Yaning Chen
Pág. 1 - 13
Most glaciers in China lie in high mountainous environments and have relatively large surface slopes. Common analyses consider glaciers? projected areas (2D Area) in a two-dimensional plane, which are much smaller than glacier?s topographic surface exten...
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Xianwei Wang, Huijiao Chen and Yaning Chen
Most glaciers in China lie in high mountainous environments and have relatively large surface slopes. Common analyses consider glaciers? projected areas (2D Area) in a two-dimensional plane, which are much smaller than glacier?s topographic surface exten...
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Yang Zhao, Yaning Chen, Shunjun Hu, Yanjun Shen, Fan Liu and Yucui Zhang
This research, conducted at the National Field Science Observation and Research Station of the Aksu Farmland Ecosystem in Xinjiang, was performed to partition evapotranspiration components, identify the main water absorption depth, and quantify the contr...
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Ganchang He, Yaning Chen, Gonghuan Fang and Zhi Li
The stationarity test and systematic prediction of hydrometeorological parameters are becoming increasingly important in water resources management. Based on the Ensemble Kalman Filter (EnKF) and wavelet analysis, this study selects precipitation, evapor...
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Yanyun Xiang, Yi Wang, Yaning Chen, Yifei Bai, Leyuan Zhang and Qifei Zhang
The aim of this research was to use the standardized runoff index (SRI) with a three-month timescale (SRI-3) to analyze hydrological drought risk in two arid river basins characterized by different runoff regimes, Northwest China. Based on SRI-3, hydrolo...
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Yuting Fan, Yaning Chen, Qing He, Weihong Li and Yun Wang
Understanding runoff generation and dynamics is the basis for water resource management, while water isotopic ratios are a potential tool for studying the mechanism on a large scale. In this paper, spatial variations of d18O and dD of river water and the...
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Yuting Fan, Yaning Chen, Qing He, Weihong Li, Yun Wang
Pág. 1 - 14
Understanding runoff generation and dynamics is the basis for water resource management, while water isotopic ratios are a potential tool for studying the mechanism on a large scale. In this paper, spatial variations of d18O and dD of river water and the...
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