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Effects of Climate Change and Human Activities on Surface Runoff in the Luan River Basin

机译:Change河流域气候变化和人类活动对地表径流的影响

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Quantifying the effects of climate change and human activities on runoff changes is the focus of climate change and hydrological research. This paper presents an integrated method employing the Budyko-based Fu model, hydrological modeling, and climate elasticity approaches to separate the effects of the two driving factors on surface runoff in the Luan River basin, China. The Budyko-based Fu model and the double mass curve method are used to analyze runoff changes during the period 1958~2009. Then two types of hydrological models (the distributed Soil and Water Assessment Tool model and the lumped SIMHYD model) and seven climate elasticity methods (including a nonparametric method and six Budyko-based methods) are applied to estimate the contributions of climate change and human activities to runoff change. The results show that all quantification methods are effective, and the results obtained by the nine methods are generally consistent. During the study period, the effects of climate change on runoff change accounted for 28.3~46.8% while those of human activities contributed with 53.2~71.7%, indicating that both factors have significant effects on the runoff decline in the basin, and that the effects of human activities are relatively stronger than those of climate change.
机译:量化气候变化和人类活动对径流变化的影响是气候变化和水文研究的重点。本文提出了一种基于Budyko的Fu模型,水文模型和气候弹性方法的综合方法,以区分这两种驱动因子对the河流域地表径流的影响。利用基于Budyko的Fu模型和双重质量曲线方法分析了1958〜2009年的径流变化。然后应用两种类型的水文模型(分布式土壤和水评估工具模型和集总SIMHYD模型)和七种气候弹性方法(包括非参数方法和六种基于Budyko的方法)来估算气候变化和人类活动的贡献。径流变化。结果表明,所有定量方法均有效,这九种方法得到的结果基本一致。在研究期间,气候变化对径流变化的影响约占28.3〜46.8%,而人类活动的影响约占53.2〜71.7%,这表明这两个因素对流域径流的减少都有显着影响,且该影响人类活动的强度要比气候变化的强度高。

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