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Dye tracing a jokulhlaup: I. Subglacial water transit speed and water-storage mechanism

机译:染料追踪jokulhlaup:I.冰河下水的传播速度和储水机制

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We present results of an investigation of two jokulhlaups (glacial lake outburst floods) at Gornergletscher, Switzerland, using dye-tracer experiments and complementary hydrological measurements. Repeated dye injections into moulins showed that tracer transit speeds were larger after the lake had emptied, but when proglacial discharge was still high, than during the main phase of the jokulhlaup. This counter-intuitive finding was modelled by tracer retardation inside the injection moulin. This model, together with an estimate of the maximum time the tracer takes to transit the injection moulin, allows us to calculate bounds on the transit speed in the main drainage channel where the lake water flows. These results indicate that the main drainage channel transit speeds are indeed highest during the peak of the flood. Moreover, it is known from a previous study that water amounting to half of the lake volume is temporarily stored within the glacier during a Gornergletscher jokulhlaup. Our observations suggest that this process occurred via lateral spreading of water at the glacier bed.
机译:我们使用染料示踪剂实验和互补的水文测量方法,对瑞士Gornergletscher的两次jokulhlaups(冰川湖爆发洪水)进行了调查,得出了结果。反复向红磨坊中注入染料表明,湖倒空后,示踪剂的通过速度要大一些,但在冰川溢流仍然很高的情况下,比乔库拉普的主要阶段要快。这个反直觉的发现是通过注射红磨坊内部的示踪剂阻滞来建模的。该模型,加上对示踪剂转移注射红磨坊所需的最长时间的估计,使我们能够计算出湖水流经的主要排水通道的传播速度的界限。这些结果表明,在洪峰期间,主要排水通道的穿越速度确实最高。此外,从先前的研究中得知,在戈尔内格莱彻湖(gornergletscher jokulhlaup)期间,相当于湖泊容积一半的水被暂时储存在冰川中。我们的观察结果表明,这一过程是通过冰川床中水的横向扩散而发生的。

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