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首页> 外文期刊>Journal of Hydrology >Temporal and spatial variations in river specific conductivity: Implications for understanding sources of river water and hydrograph separations
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Temporal and spatial variations in river specific conductivity: Implications for understanding sources of river water and hydrograph separations

机译:河流特定电导率的时间和空间变化:对理解河水和水文分离来源的影响

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摘要

Specific conductivity (SC) is commonly used to estimate the proportion of baseflow (i.e., waters from within catchments such as groundwater, interflow, or bank return flows) contributing to rivers. Reach-scale SC comparisons are also useful for identifying where multiple water stores contribute to baseflow. Daily SC values of adjacent gauges in Australian (the Barwon, Glenelg, and Campaspe Rivers) and North American (the Upper Colorado River) catchments are commonly not well correlated (R-2 = 0.32 to 0.82). Smoothed inter-gauge SC values averaged over 7 to 45 days are better correlated and define a series of hysteresis loops. The variable SC patterns between adjacent gauges probably reflect varying proportions of groundwater, bank return waters, interflow, and soil water contributing to baseflow. In some rivers using SC values to compare baseflow along river reaches on sub-annual timescales may be not be feasible.
机译:比电导率(SC)通常用于估算对河流有贡献的基流(即来自集水区内的水,如地下水、混流或河岸回流)的比例。Reach scale SC比较也有助于确定多个蓄水库对基流的贡献。澳大利亚(Barwon河、Glenelg河和Campaspe河)和北美(科罗拉多河上游)集水区相邻水位计的每日SC值通常没有很好的相关性(R-2=0.32至0.82)。在7到45天内平均的平滑轨距间SC值具有更好的相关性,并定义了一系列迟滞回线。相邻压力计之间的可变SC模式可能反映了地下水、河岸回水、混流和土壤水对基流的不同比例。在一些河流中,使用SC值在次年时间尺度上比较沿河段的基流可能是不可行的。

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