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Temperature dynamics of a proglacial stream: Identifying dominant energy balance components and inferring spatially integrated hydraulic geometry

机译:冰川流的温度动态:确定主要的能量平衡成分并推断空间整合的水力几何形状

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摘要

Proglacial fields typically have complex topography and heterogeneous sediments, resulting in highly variable flow and temperature regimes in surface runoff and groundwater. Using data from the Damma glacier forefield (Switzerland), we examined how longitudinal stream temperature changes can be used to infer reach-averaged hydrological and thermal processes in proglacial riparian zones. A simple energy balance showed that (1) radiative forcing and frictional warming largely explained the observed temperature patterns in three stream reaches, and that (2) groundwater inflow and/or hyporheic exchange appear to influence stream warming along a fourth reach. Daytime stream warming depends on channel width, and here we show that stream temperature measurements can be used to infer reach-averaged hydraulic geometry relationships between stream width and discharge, which are normally difficult to obtain by other methods in braided gravel bed streams. Our results illustrate how proglacial stream temperatures can yield spatially integrated information about hydrological and thermal processes in glacial forefields, where extreme spatial heterogeneity makes conventional methods difficult to apply.
机译:冰川原地通常具有复杂的地形和非均质的沉积物,导致地表径流和地下水的流动和温度变化很大。利用来自达马冰川前场(瑞士)的数据,我们研究了如何利用纵向河流温度变化来推断冰河沿岸地区的平均水文和热过程。一个简单的能量平衡表明,(1)辐射强迫和摩擦变暖在很大程度上解释了三个河段观测到的温度模式,并且(2)地下水的流入和/或低渗交换似乎影响了第四河段的河床升温。白天溪流的变暖取决于河道的宽度,在这里我们证明了溪流温度的测量可以用来推断溪流宽度和流量之间的平均水力几何关系,这在编织砾石床流中通常很难通过其他方法获得。我们的结果表明,冰川前流温度如何产生关于冰川前场中水文和热过程的空间综合信息,而极端的空间异质性使常规方法难以应用。

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  • 来源
    《Water resources research》 |2012年第6期|p.W06510.1-W06510.16|共16页
  • 作者单位

    WSL Institute for Snow and Ava lanche Research SLF, Fluelastr. 11, Davos Dorf, CH-7260 Switzerland;

    WSL Institute for Snow and Avalanche Research SLF, Davos Dorf, Switzerland;

    Swiss Federal Institute for Forest, Snow, and Landscape Research, WSL, Birmensdorf, Switzerland,Department of Environmental Sciences, Swiss Federal Institute of Technology, ETH, Zurich, Switzerland.;

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