2024
DOI: 10.3390/w16030501
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Understanding the Propagation of Meteorological Drought to Groundwater Drought: A Case Study of the North China Plain

Yuyin Chen,
Yongqiang Zhang,
Jing Tian
et al.

Abstract: As extreme climate events become more common with global warming, groundwater is increasingly vital for combating long-term drought and ensuring socio-economic and ecological stability. Currently, the mechanism of meteorological drought propagation to groundwater drought is still not fully understood. This study focuses on the North China Plain (NCP), utilizing statistical theories, spatiotemporal kriging interpolation, and the Mann–Kendall trend test to examine the spatial and temporal distribution characteri… Show more

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Cited by 3 publications
(1 citation statement)
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“…The lag time of meteorological drought on groundwater system is highly uncertain at a global scale. For instance, the lag time in the Xijiang basin of China ranges from 8 to 42 months (Han et al 2019), while in the North China Plain, it spans from 0 to 60 months (Chen et al 2024). Our findings in the Murray Basin suggest that climatic variables can affect groundwater systems over a period of up to 2 years.…”
Section: Discussionmentioning
confidence: 71%
“…The lag time of meteorological drought on groundwater system is highly uncertain at a global scale. For instance, the lag time in the Xijiang basin of China ranges from 8 to 42 months (Han et al 2019), while in the North China Plain, it spans from 0 to 60 months (Chen et al 2024). Our findings in the Murray Basin suggest that climatic variables can affect groundwater systems over a period of up to 2 years.…”
Section: Discussionmentioning
confidence: 71%