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Fractal dimension estimation of groundwater depth series of well irrigation area in Sanjiang Plain based on continuous wavelet transform

机译:基于连续小波变换的三江平原井灌区地下水深度序列分形维数估计

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In order to reveal the groundwater depth series complexity characteristic of well irrigation area in Sanjiang Plain, taking Jiansanjiang branch bureau as example, the fractal dimension estimation method of hydrological series based on continuous wavelet transform was adopted to analyze the complexity of groundwater depth series in 7 production teams of Jiansanjiang branch bureau. The results show that the wavelet fractal dimension estimation method is robust and feasible. The complexity order of each groundwater depth series from big to small is as follows:69th production team of Farm Qixing, 22th production team of Farm Qianjin, 4th production team of Farm Qianjin, 1th production team of Farm 859, 11th production team of Farm Qianjin, 26th production team of Farm 859, 21th production team of Farm 859. We can see that the groundwater exploitation is the key driving factor of groundwater depth complexity. The research achievements reveal the characteristic of local groundwater resources complex system and provide decision basis for scientifically managing groundwater resources in Jiansanjiang branch bureau so much as the entire Sanjiang Plain.
机译:为了揭示三江平原井灌区地下水深度序列的复杂性特征,以建三江支局为例,采用基于连续小波变换的水文序列分形维数估计方法,分析了7个地区地下水深度序列的复杂性。建三江分公司生产队。结果表明,小波分形维估计方法是鲁棒的和可行的。每个地下水深度系列的复杂程度从大到小依次为:七星农场第69生产队,钱津农场第22生产队,钱津农场第4生产队,859钱农场第1生产队,钱津农场第11生产队。 ,Farm 859的第26生产团队,859农场的第21生产团队。我们可以看到,地下水开采是地下水深度复杂性的关键驱动因素。研究成果揭示了当地地下水资源复杂系统的特点,为剑江三江支局乃至整个三江平原的科学管理地下水提供了决策依据。

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