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Comparative Evaluation of Radar–Gauge Fusion and Rain Gauge Rainfall Inputs for Flood Simulation in a Small Pumped-Storage Hydropower Catchment

作者:Zhihui Lin, Xiaoqi Yu, Z Huang, Z Huang, 梁纪泽, Yangbo Chen · 发表于:Water · 年份:2026 · DOI:10.3390/w18151818 · 研究领域:Precipitation Measurement and Analysis、Hydrology and Watershed Management Studies、Hydrology and Drought Analysis

Rainfall input, as the primary driver of distributed hydrological models, can be derived from rain gauge observations or weather radar quantitative precipitation estimates (QPEs). While radar–gauge fusion products offer high-resolution spatial rainfall information, their comparative performance against traditional gauge-interpolated rainfall in small regulated catchments remains insufficiently understood. This study conducted a systematic comparison of radar–gauge fusion and gauge-interpolated rainfall inputs for flood simulation in the Yongtai pumped-storage hydropower catchment (∼60.5 km2) in Fujian Province, China. Using the physically based Liuxihe distributed hydrological model, six typical flood events (2023–2025) encompassing various magnitudes and hydrograph patterns were simulated. Model parameters were optimized via particle swarm optimization, and simulation accuracy was evaluated using NSE, KGE, peak relative error (PRE), and absolute peak time error (APTE). Rainfall spatial variability was quantified using the coefficient of variation (CV) and information entropy (H). Results showed that both rainfall inputs achieved generally acceptable simulation accuracy for most events after parameter optimization, with APTE within 1 h and PRE mostly below 15%, although event-to-event differences remained evident. Radar–gauge rainfall exhibited consistently higher CV (+34.1%) and H (+84.4%) than gauge-interpolated rainfall across all events, indicating greater spatial variabi...