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Multifractal Detrended Fluctuation Analysis Of Streamflow Series Of The Yangtze River Basin, China

机译:长江流域水流序列的多重分形趋势波动分析

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摘要

Scaling and multifractal properties of the hydrological processes of the Yangtze River basin were explored by using a multifractal detrended fluctuation analysis (MF-DFA) technique. Long daily mean streamflow series from Cuntan, Yichang, Hankou and Datong stations were analyzed. Using shuffled streamflow series, the types of multifractality of streamflow series was also studied. The results indicate that the discharge series of the Yangtze River basin are non-stationary. Different correlation properties were identified within streamflow series of the upper, the middle and the lower Yangtze River basin. The discharge series of the upper Yangtze River basin are characterized by short memory or anti-persistence; while the streamflow series of the lower Yangtze River basin is characterized by long memory or persistence. h(q) vs q curves indicate multifractality of the hydrological processes of the Yangtze River basin. h(q) curves of shuffled streamflow series suggest that the multifractality of the streamflow series is mainly due to the correlation properties within the hydrological series. This study may be of practical and scientific importance in regional flood frequency analysis and water resource management in different parts of the Yangtze River basin.
机译:利用多元分形趋势波动分析(MF-DFA)技术研究了长江流域水文过程的尺度和多重分形特征。分析了寸滩,宜昌,汉口和大同站的长日平均流量序列。利用改组的水流序列,研究了水流序列的多重分形类型。结果表明,长江流域的流量序列是不稳定的。在长江中上游地区的水流序列中确定了不同的相关性。长江上游流域的排放序列以记忆力不足或持续时间长为特征。长江下游水流序列以记忆力或持久性为特征。 h(q)vs q曲线表示长江流域水文过程的多重分形。改组的水流序列的h(q)曲线表明,水流序列的多重分形性主要是由于水文序列内的相关性。这项研究对长江流域不同地区的洪水频率分析和水资源管理具有实际和科学意义。

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