Peter Hannes, Sommaruga Ruben
Institute of Ecology, Lake and Glacier Ecology Research Group, University of Innsbruck, Innsbruck, Austria.
Stream Biofilm and Ecosystem Research Laboratory, Faculty of Architecture, Civil and Environmental Engineering, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Inland Waters. 2017 Jan 2;7(1):45-54. doi: 10.1080/20442041.2017.1294346. Epub 2017 May 2.
Glacier retreat as a consequence of climate change influences freshwater ecosystems in manifold ways, yet the physical and chemical bases of these effects are poorly studied. Here, we characterize how water temperature differs between alpine lakes with and without direct glacier influence on seasonal and diurnal timescales. Using high temporal resolution monitoring of temperature in 4 lakes located in a catchment influenced by glacier retreat, we reported unexpectedly high surface temperatures, even in proglacial lakes located 2600 m a.s.l. Cold glacier meltwater and low nighttime air temperatures caused a distinct diurnal pattern of water temperature in the water column of glacier-influenced lakes. Precipitation onto glacier surfaces apparently leads to rapid cooling of the glacier-fed lakes and disrupts the thermal stratification with several mixing events during the summer. Taken together, these mechanisms contribute to the unique seasonal and diurnal dynamics of glacier-influenced lakes that contrast with the typical dimictic pattern of clear alpine lakes and represent an example of discontinuous cold polymictic lake type. This work contributes to the basic description of how climate and meteorology affect the physical properties of an increasingly common lake type.
气候变化导致的冰川消退以多种方式影响淡水生态系统,然而这些影响的物理和化学基础却鲜有研究。在此,我们描述了受冰川直接影响和不受冰川直接影响的高山湖泊在季节和昼夜时间尺度上水温的差异。通过对位于受冰川消退影响集水区的4个湖泊进行高时间分辨率的温度监测,我们发现即使在海拔2600米的冰前湖,其表面温度也出乎意料地高。寒冷的冰川融水和较低的夜间气温导致受冰川影响湖泊水柱中出现独特的昼夜水温模式。冰川表面的降水显然会导致由冰川补给的湖泊迅速降温,并在夏季通过几次混合事件破坏热分层。综上所述,这些机制促成了受冰川影响湖泊独特的季节和昼夜动态,这与清澈高山湖泊典型的双季混合模式形成对比,代表了一种不连续冷多混合湖类型的实例。这项工作有助于对气候和气象如何影响一种日益常见的湖泊类型的物理特性进行基础描述。