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Description of current and future snow processes in a small basin in the Bavarian Alps

机译:巴伐利亚阿尔卑斯山小流域当前和未来的降雪过程描述

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Snow cover dynamics in alpine regions play a crucial role in view of the water balance of head water catchments. The temporal storage of water in form of snow and ice leads to a decoupling of precipitation and runoff. Changes in the volume and the temporal dynamics of the snow storage lead to modified runoff regimes and can influence the frequency of low flow events and floods. For a better estimation of the possible range and direction of future changes, projection runs can be realized by using process-based models. In this study, the Cold Regions Hydrological Modelling platform (CRHM) is used to compile such a model for simulating the snow cover development within research catchment Zugspitze (RCZ; 11.4 km(2)/Germany). Therefore, the catchment is divided into four hydrological response units (HRUs), able to cover the physiographic characteristics in four elevation zones. The model is evaluated over snow depth measurements. The range of variability within and differences between the HRUs are analyzed, and future projections (2001-2100) are performed on the basis of three different WETTREG realizations. It could be shown that CRHM is able to reproduce the snow cover dynamics very well and that the ongoing climate change does have an identifiable influence on the average extent and size of the snow storage. Furthermore, it could be shown that variations in snow cover dynamics within the RCZ are strongly connected to NAO.
机译:鉴于源头集水区的水平衡,高山地区的积雪动态起着至关重要的作用。雪和冰形式的水的暂时存储导致降水和径流的解耦。积雪的体积和时间动态变化会导致径流状况发生变化,并可能影响低流量事件和洪水的发生频率。为了更好地估计未来变化的可能范围和方向,可以使用基于过程的模型来实现投影运行。在这项研究中,寒冷地区水文模拟平台(CRHM)用于编译这样的模型,以模拟楚格峰(RCZ; 11.4 km(2)/德国)研究流域内的积雪发展。因此,流域被划分为四个水文响应单位(HRU),能够涵盖四个高程区的生理特征。通过雪深测量评估模型。分析了HRU内部的可变性范围和差异,并基于三种不同的WETTREG实现对未来的预测(2001-2100)进行了分析。可以证明,CRHM能够很好地再现积雪的动态,并且正在进行的气候变化确实对积雪的平均范围和大小具有明显的影响。此外,可以表明,RCZ内积雪动力学的变化与NAO密切相关。

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