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Statistical analysis of hydrological response in urbanising catchments based on adaptive sampling using inter-amount times

机译:基于时间间隔量自适应采样的城市化流域水文响应统计分析

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Urban catchments are typically characterised by a more flashy nature of the hydrological response compared to natural catchments. Predicting flow changes associated with urbanisation is not straightforward, as they are influenced by interactions between impervious cover, basin size, drainage connectivity and stormwater management infrastructure. In this study, we present an alternative approach to statistical analysis of hydrological response variability and basin flashiness, based on the distribution of inter-amount times. We analyse inter-amount time distributions of high-resolution streamflow time series for 17?(semi-)urbanised basins in North Carolina, USA, ranging from 13 to 238?kmsup2/sup in size. We show that in the inter-amount-time framework, sampling frequency is tuned to the local variability of the flow pattern, resulting in a different representation and weighting of high and low flow periods in the statistical distribution. This leads to important differences in the way the distribution quantiles, mean, coefficient of variation and skewness vary across scales and results in lower mean intermittency and improved scaling. Moreover, we show that inter-amount-time distributions can be used to detect regulation effects on flow patterns, identify critical sampling scales and characterise flashiness of hydrological response. The possibility to use both the classical approach and the inter-amount-time framework to identify minimum observable scales and analyse flow data opens up interesting areas for future research.
机译:与自然流域相比,城市流域的典型特征是水文响应的浮华性更高。预测与城市化相关的流量变化并非易事,因为它们受不透水覆盖层,流域规模,排水连通性和雨水管理基础设施之间相互作用的影响。在这项研究中,我们提出了一种基于相互间时间分布的水文响应变异性和流域闪耀性统计分析的替代方法。我们分析了美国北卡罗来纳州17个(半)城市化盆地的高分辨率水流时间序列的跨量时间分布,其大小范围为13至238?km 2 。我们表明,在时间跨度框架内,采样频率已调整到流量模式的局部可变性,从而导致统计分布中高流量时段和低流量时段的表示形式和权重不同。这导致分布分位数,均值,变异系数和偏度在各个尺度上的变化方式上存在重要差异,并导致平均间断性降低和缩放比例提高。此外,我们表明,时间跨度分布可用于检测对流型的调节作用,确定关键的采样尺度并表征水文响应的闪现性。同时使用经典方法和时间跨度框架来识别最小可观察尺度并分析流量数据的可能性为将来的研究开辟了有趣的领域。

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