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Measured river leakages using conventional streamflow techniques: the case of Souhegan River, New Hampshire, USA

机译:使用常规流量技术测得的河流泄漏量:以美国新罕布什尔州苏赫甘河为例

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Multiple streamflow measurements were made at coupled discharge measurement stations to quantify rates of aquifer recharge and discharge on two reaches of the Souhegan River, New Hampshire, USA, flowing within a glacial-drift river-valley aquifer. The reaches included a predominantly losing (aquifer recharge) reach and a variable (aquifer recharge and discharge) reach located downstream of the former reach. River leakage, the differential between coupled upstream and downstream streamflow measurements along a reach, varied by almost 30 cubic feet per second (ft(3)/s) (0.85m(3)/s) along the two reaches. The upper reach averaged 3.94ft(3)/s (0.11m(3)/s) loss whereas the lower reach averaged 4.85ft(3)/s (0.14m(3)/s) gain. At the upper reach, 13 losses were measured out of 19 coupled measurements. At the lower reach, ten out of 13 coupled measurements indicated gains in flow and suggest that this reach is primarily a gaining river reach. An important factor in river leakage appears to be antecedent trends in river stage. At the upper reach, gains were measured only during periods of declining river stage. Conversely, at the lower reach, streamflow loss was measured primarily during periods of rising river stage. Although some tendencies exist, several factors complicate the analysis of river leakage, most notably the inaccuracies in computed stream discharge.
机译:在耦合排放测量站进行了多次流量测量,以量化在美国新罕布什尔州苏赫干河的两个河段中流动的冰川流域河谷含水层中的含水层补给和排放速率。这些河段主要包括损失(含水层补给)河段和位于前一个河段下游的可变(含水层补给和排放)河段。河流泄漏是沿一条河段上游和下游流量测量之间的差值,沿两条河段变化了近30立方英尺每秒(ft(3)/ s)(0.85m(3)/ s)。上游平均损失为3.94ft(3)/ s(0.11m(3)/ s),而下部平均收益为4.85ft(3)/ s(0.14m(3)/ s)。在上游,在19个耦合测量中测量了13个损耗。在下游,13个耦合测量结果中有10个表明流量增加,这表明该河段主要是河流上游。河流泄漏的重要因素似乎是河流阶段的前期趋势。在上游,仅在河流水位下降期间才测量收益。相反,在下游,主要是在河段上升期间测量流量损失。尽管存在某些趋势,但是有几个因素使河流泄漏的分析复杂化,最显着的是计算的河流流量的不精确性。

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