Characterizing the interaction of groundwater and surface water in the karst aquifer of Fangshan, Beijing (China) | Caractérisation des interactions entre les eaux souterraines et les eaux de surface au sein de l’aquifère karstique de Fangshan, Beijing (Chine) Caracterización de la interacción del agua superficial y agua subterránea en el acuífero kárstico de Fangshan, Beijing (China) 北京房山岩溶区的地下水与地表水相互作用的识别与特征分析 Caracterizando a interação entre aguas subterrâneas e superficiais no aquífero cárstico de Fangshan, Pequim (China)
2017
Chu, Haibo | Wei, Jiahua | Wang, Rong | Xin, Baodong
Correct understanding of groundwater/surface-water (GW–SW) interaction in karst systems is of greatest importance for managing the water resources. A typical karst region, Fangshan in northern China, was selected as a case study. Groundwater levels and hydrochemistry analyses, together with isotope data based on hydrogeological field investigations, were used to assess the GW–SW interaction. Chemistry data reveal that water type and the concentration of cations in the groundwater are consistent with those of the surface water. Stable isotope ratios of all samples are close to the local meteoric water line, and the ³H concentrations of surface water and groundwater samples are close to that of rainfall, so isotopes also confirm that karst groundwater is recharged by rainfall. Cross-correlation analysis reveals that rainfall leads to a rise in groundwater level with a lag time of 2 months and groundwater exploitation leads to a fall within 1 month. Spectral analysis also reveals that groundwater level, groundwater exploitation and rainfall have significantly similar response periods, indicating their possible inter-relationship. Furthermore, a multiple nonlinear regression model indicates that groundwater level can be negatively correlated with groundwater exploitation, and positively correlated with rainfall. The overall results revealed that groundwater level has a close correlation with groundwater exploitation and rainfall, and they are indicative of a close hydraulic connection and interaction between surface water and groundwater in this karst system.
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