Vine copula regional dry-wet evaluation index incorporating baseflow and XGBoost-SHAP early warning system in Huzhou, China

Study region Huzhou City, Southeastern China. Study focus This study applied the Lyne-Hollick digital filter to separate baseflow and compute the baseflow index (BFI). We then used a three-dimensional vine copula to couple BFI with precipitation and evaporation, constructing a comprehensive dry-wet index (CDI). We further developed a monthly dry-wet early warning model using XGBoost and employed the SHapley Additive exPlanations (SHAP) framework to interpret the driving mechanisms. Results revealed a notable drying tendency at four of the five stations. Despite the spatially heterogeneous trend pattern, wet events across the basin consistently coincided with high baseflow periods during the rainy season. The early warning model achieved an overall accuracy of 63.5–76.0%, while SHAP analysis indicated spatial heterogeneity in the dominant driving factors across sub-regions. New hydrological insights for the region The CDI exhibits strong correlations with the standardized precipitation index (SPI), standardized evapotranspiration index (SEI), and standardized baseflow index (SBI) at multiple temporal scales. Dry-wet conditions in the basins have shifted from seasonal alternation toward more persistent states: dry periods are concentrated mainly in winter (December to February), and wet spells largely coincide with high baseflow during the rainy season. These findings provide a scientific basis for upgrading the integrated drought and flood early warning system, optimizing water resource allocation, and formulating region-specific disaster prevention strategies in Huzhou City.

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Publication Details

Journal
Journal of Hydrology Regional Studies
Published
2026-09-19
DOI
https://doi.org/10.1016/j.ejrh.2026.104002
Primary Topic
Hydrology and Drought Analysis
Type
article
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article

Vine copula regional dry-wet evaluation index incorporating baseflow and XGBoost-SHAP early warning system in Huzhou, China

Yue‐Ping Xu, Jianuo Li, Tongtong Yu, Jiaqi Tan et al.
Journal of Hydrology Regional Studies
Hydrology and Drought Analysis
article

Vine copula regional dry-wet evaluation index incorporating baseflow and XGBoost-SHAP early warning system in Huzhou, China

Yue‐Ping Xu, Jianuo Li, Tongtong Yu, Jiaqi Tan, Hao Chen, Yukun Wang, Yuxue Guo, Yu Qiao, Saihua Huang, Hui Nie, Zhishao Li
article en

Abstract

Study region Huzhou City, Southeastern China. Study focus This study applied the Lyne-Hollick digital filter to separate baseflow and compute the baseflow index (BFI). We then used a three-dimensional vine copula to couple BFI with precipitation and evaporation, constructing a comprehensive dry-wet index (CDI). We further developed a monthly dry-wet early warning model using XGBoost and employed the SHapley Additive exPlanations (SHAP) framework to interpret the driving mechanisms. Results revealed a notable drying tendency at four of the five stations. Despite the spatially heterogeneous trend pattern, wet events across the basin consistently coincided with high baseflow periods during the rainy season. The early warning model achieved an overall accuracy of 63.5–76.0%, while SHAP analysis indicated spatial heterogeneity in the dominant driving factors across sub-regions. New hydrological insights for the region The CDI exhibits strong correlations with the standardized precipitation index (SPI), standardized evapotranspiration index (SEI), and standardized baseflow index (SBI) at multiple temporal scales. Dry-wet conditions in the basins have shifted from seasonal alternation toward more persistent states: dry periods are concentrated mainly in winter (December to February), and wet spells largely coincide with high baseflow during the rainy season. These findings provide a scientific basis for upgrading the integrated drought and flood early warning system, optimizing water resource allocation, and formulating region-specific disaster prevention strategies in Huzhou City.

Journal of Hydrology Regional StudiesVol. 68
Zhejiang Water Conservancy and Hydropower Survey and Design Institute (CN), Zhejiang University of Water Resource and Electric Power (CN)
Climate action
Openalex Percentile: Top 13%
Hydrology and Drought Analysis
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