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March 29, 2026Hydrology and earth system sciences2 citationsOpen Access

Baseflow in karst regions is significantly higher than the global average and exhibits spatial variability

ZYZe YuanQZQiuwen ZhouYLYuan Li

Key Points

  • This research aims to assess and compare the baseflow index in karst regions globally.
  • Analyzed runoff data from 1375 karst basins worldwide.
  • Employed graphical and digital filtering methods.
  • Estimated the Baseflow Index (BFI) for karst regions.
  • Examined spatial patterns and trends of BFI across different climatic zones.
  • Global karst areas have a baseflow index of approximately 78±6.9%, significantly exceeding the global average of 60%.
  • Arid karst regions show higher average BFI (82%) compared to subtropical regions (77%).
  • BFI varies greatly even within the same climatic zone by over 10% in some areas.
  • Vegetation factors have a considerable influence on baseflow (14.8%), while climatic factors have less impact (less than 5%).
  • The global karst baseflow index has increased by about 1.5% from 1960 to 2015.

Abstract

Abstract. The distinct hydrogeological configurations of karst terrains engender fundamentally divergent baseflow regimes compared with non-karst systems. However, there is still some uncertainty in the understanding of baseflow in global karst regions due to the variability of methods and differences in natural conditions in different regions. In this study, runoff data from 1375 karst basins around the world were summarized. Graphical and digital filtering methods were employed to estimate the Baseflow Index (BFI, defined as the ratio of baseflow to total streamflow) and to analyze its spatial patterns and trends. The results show that the baseflow index of global karst areas is about 78±6.9 %, which is significantly higher than the global average baseflow index (60 %). The baseflow index of karst regions in different climatic zones also differed significantly, in which the average baseflow index of arid karst regions (82 %) was significantly higher than the average baseflow index of subtropical karst regions (77 %). Even within the same climate zone, the base flow index of different regions may also have significant differences, and the difference of some regions is even > 10 %. Vegetation factors reflected in primary productivity have the highest influence on baseflow in karst regions (14.8 %), while climatic factors (relative humidity, air temperature, etc.) have a lower influence on BFIs in karst regions (less than 5 %). From the time series trend, the global karst baseflow index shows an increasing trend, about 1.5 % from 1960 to 2015. These results help us to further understand karst hydrological processes and the response mechanism of karst hydrology under climate change.

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Cite This Study

Yuan et al. (2026) studied this question.

synapsesocial.com/papers/69c8c214de0f0f753b39c451https://doi.org/10.5194/hess-30-1607-2026
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