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Runoff Dynamics and Associated Multi-Scale Responses to Climate Changes in the Middle Reach of the Yarlung Zangbo River Basin, China

机译:径流动力学和相关的多规模对气候变化的影响,在中国雅隆Zangbo河流域中部地区

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摘要

Long-term hydro-climatic datasets and sophisticated change detection methods are essential for estimating hydro-climatic trends at regional and global scales. Here, we use the ensemble empirical mode decomposition method (EEMD) to investigate runoff oscillations at different time scales and its response to climatic fluctuations in the middle of the Yarlung Zangbo River Basin (MYZRB) over the period 1961–2009. In the study region, results revealed that the runoff presented an overall nonlinear and nonstationary decreasing-increasing alternative trend with weak quasi-three-year and unobvious quasi-five-year cycles at the inter-annual scale, while, significance was discovered with quasi-12-year and quasi-46-year cycles at the inter-decadal scale. Variance contribution rates of the hydrological components suggested that the inter-annual oscillations played an essential role in the runoff variations in the MYZRB. According to the reconstructed inter-decadal runoff series, the runoff may keep declining in future. For the response of runoff to climate change, overall, the runoff had a positive correlation with precipitation and a negative correlation with extreme temperature. But the runoff did not show obvious correlation with mean temperature. Furthermore, from a temporal scale point of view, the inter-annual runoff showed significant response to the inter-annual precipitation. The inter-decadal runoff strongly responded to the inter-annual extreme temperature. These findings will help us understand the hydro-climatic intrinsic mechanism in the MYZRB and develop better water resources management to account for climate change impact.
机译:长期水力 - 气候数据集和复杂的变化检测方法对于估算区域和全球尺度的水力气候趋势至关重要。在这里,我们使用集合经验模式分解方法(EEMD)来调查不同时间尺度的径流振荡及其对1961 - 2009年期间的雅隆Zangbo河流域(MYZRB)中间的对气候波动的响应。在研究区域,结果表明,径流介绍了一流的非线性和非间断的替代趋势,较弱的准三年和年度五年 - 年度五年循环,虽然以准则发现了重要性 - 十二年间规模的-12年和准46年周期。水文组分的差异贡献率表明,年度振荡跨越了MYZRB径流​​变化的重要作用。根据重建的二等间径流系列,径流可能会在将来保持下降。对于径流到气候变化的响应,总体而言,径流与降水和与极端温度的负相关性有正相关。但径流没有显示出明显的与平均温度相关。此外,从时间比例的角度来看,年龄阶段的径流表现出对年间降水的显着反应。跨越的间径流强烈反应年度间的极端温度。这些调查结果将帮助我们了解MyzRB中的水力气候内在机制,并开发更好的水资源管理,以解释气候变化的影响。

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