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Trend Analysis of At-a-station Hydraulic Geometry Relations on the Loess Plateau of China

机译:中国黄土高原液压几何关系趋势分析

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Empirical at-a-station hydraulic geometry (AHG) power function relations have been widely used to depict relationships between flow width (W), flow depth (D), mean flow velocity (Ⅴ) and discharge rate (Q) for natural rivers and streams. However, it has seldom been considered whether AHG relations hold true for describing hydraulic relations at watershed outlet channels. In this study, observed data from three experimental watersheds of different sizes (1-100 km~2) in the past three decades were used to verify stability of AHG at watershed outlet channels on the Loess Plateau in China. Trend analysis via the sequential Mann-Kendall test was used to detect the stability and abrupt changes in AHG during the study course. The results suggested strong stability in AHG exponents and significant decline in coefficients (P < 0.05). The abrupt decline for coefficients was found to be influenced by human activities such as land use changes. This study could provide some useful aids for watershed hydrology management.
机译:经验型液压几何(AHG)功率函数关系已被广泛用于描绘流量宽度(W),流量深度(D),平均流速(ⅴ)和用于自然河流的排出率(Q)之间的关系溪流。然而,它很少被认为是AHG关系是否适用于描述流域出口通道的水力关系。在这项研究中,过去三十年来观察来自三个不同尺寸的实验流域(1-100公里〜2)的数据用于验证中国在中国黄土高原的流域出口通道的AHG稳定性。通过顺序MANN-KENDALL测试的趋势分析用于检测学习过程中AHG的稳定性和突变变化。结果表明AHG指数的稳定性强,系数显着下降(P <0.05)。发现系数的突然衰落受到人类活动的影响,如土地利用变化。本研究可以为流域水文管理提供一些有用的辅助工具。

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