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Multifractality and cross-correlation analysis of streamflow and sediment fluctuation at the apex of the Pearl River Delta

机译:珠江三角洲水流与泥沙波动的多重分形和互相关分析

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摘要

The fluctuation and distribution of hydrological signals are highly related to the fluvial and geophysical regime at estuarine regions. Based on the long daily streamflow and sediment data of Makou (MK) and Sanshui (SS) stations at the apex of the Pearl River Delta, the scaling behavior of the streamflow and sediment is explored by multifractal detrended fluctuation analysis (MF-DFA). The results indicated that there was significant multifractal structure present in the fluctuations of streamflow and sediment. Meanwhile, the multifractal degree and complexity of sediment were much stronger than streamflow. Although the scaling exponents of streamflow were larger than sediment at both MK and SS, no evident differences have been found on the scaling properties of streamflow and sediment for the ratios MK/SS. Moreover, the cross-correlation between streamflow and sediment is further detected by Multifractal Detrended Cross-Correlation Analysis (MF-DXA). The multifractal response between streamflow and sediment at small timescale is characterized by long-range correlations whereas it exhibits random behavior at large timescale. The interaction of the broadness of probability density function and the long-range correlations should be responsible for the multifractal properties of hydrological time series as the multifractal degree of surrogate and shuffled data was significantly undermined.
机译:水文信号的波动和分布与河口地区的河流和地球物理状况高度相关。基于珠三角三角洲最高处的马口(MK)和三水(SS)站的长期日流量和泥沙数据,通过多分形趋势分解波动分析(MF-DFA)探讨了流量和泥沙的结垢行为。结果表明,水流和泥沙的波动存在明显的多重分形结构。同时,沉积物的多重分形度和复杂性比水流强得多。尽管在MK和SS处水流的结垢指数都大于沉积物,但对于MK / SS的比率,在水流和沉积物的结垢性质上未发现明显差异。此外,通过多重分形去趋势互相关分析(MF-DXA)进一步检测了水流与沉积物之间的互相关。小尺度下水流与沉积物之间的多重分形响应具有长期相关性,而大尺度下表现出随机行为。概率密度函数的广度与远距离相关性之间的相互作用应负责水文时间序列的多重分形特性,因为替代和混排数据的多重分形度被大大破坏了。

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