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The European mountain cryosphere: a?review of its current state, trends, and future challenges

机译:欧洲山区冰冻圈:其现状,趋势和未来挑战的回顾

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The mountain cryosphere of mainland Europe is recognized to have important impacts on a?range of environmental processes. In this paper, we provide an overview on the current knowledge on snow, glacier, and permafrost processes, as well as their past, current, and future evolution. We additionally provide an assessment of current cryosphere research in Europe and point to the different domains requiring further research. Emphasis is given to our understanding of climate–cryosphere interactions, cryosphere controls on physical and biological mountain systems, and related impacts. By the end of the century, Europe's mountain cryosphere will have changed to an extent that will impact the landscape, the hydrological regimes, the water resources, and the infrastructure. The impacts will not remain confined to the mountain area but also affect the downstream lowlands, entailing a?wide range of socioeconomical consequences. European mountains will have a?completely different visual appearance, in which low- and mid-range-altitude glaciers will have disappeared and even large valley glaciers will have experienced significant retreat and mass loss. Due to increased air temperatures and related shifts from solid to liquid precipitation, seasonal snow lines will be found at much higher altitudes, and the snow season will be much shorter than today. These changes in snow and ice melt will cause a?shift in the timing of discharge maxima, as well as a?transition of runoff regimes from glacial to nival and from nival to pluvial. This will entail significant impacts on the seasonality of high-altitude water availability, with consequences for water storage and management in reservoirs for drinking water, irrigation, and hydropower production. Whereas an upward shift of the tree line and expansion of vegetation can be expected into current periglacial areas, the disappearance of permafrost at lower altitudes and its warming at higher elevations will likely result in mass movements and process chains beyond historical experience. Future cryospheric research has the responsibility not only to foster awareness of these expected changes and to develop targeted strategies to precisely quantify their magnitude and rate of occurrence but also to help in the development of approaches to adapt to these changes and to mitigate their consequences. Major joint efforts are required in the domain of cryospheric monitoring, which will require coordination in terms of data availability and quality. In particular, we recognize the quantification of high-altitude precipitation as a?key source of uncertainty in projections of future changes. Improvements in numerical modeling and a?better understanding of process chains affecting high-altitude mass movements are the two further fields that?– in our view?– future cryospheric research should focus on.
机译:欧洲大陆的高山冰冻圈被认为对一系列环境过程具有重要影响。在本文中,我们概述了有关雪,冰川和多年冻土过程的最新知识,以及它们的过去,现在和将来的发展。我们还提供了对欧洲目前冰冻圈研究的评估,并指出了需要进一步研究的不同领域。我们着重于对气候-冰河圈相互作用,冰冻圈对自然和生物山区系统的控制以及相关影响的理解。到本世纪末,欧洲的高山冰冻圈将发生一定程度的变化,从而影响景观,水文状况,水资源和基础设施。这些影响将不仅限于山区,还会影响下游的低地,带来广泛的社会经济后果。欧洲的山脉将具有完全不同的视觉外观,其中低海拔和中海拔的冰川将消失,甚至大山谷冰川也将经历重大的退缩和质量损失。由于气温升高以及相关的从固体降水到液体降水的转变,季节性的雪线将出现在更高的高度,并且雪季将比今天短得多。雪和冰融化的这些变化将导致最大排放时间的变化,以及径流状态从冰川到新生,从新生到生源的过渡。这将对高海拔用水的季节性产生重大影响,并影响到用于饮用水,灌溉和水力发电的水库中的水存储和管理。可以预见到当前冰缘地区林木线会向上移动,植被将会扩展,而低海拔地区的永久冻土消失和高海拔地区的变暖可能会导致大规模的运动和过程链,超出历史经验。未来的冰冻圈研究不仅有责任增强对这些预期变化的认识,并制定有针对性的策略以精确地量化其发生的幅度和发生率,而且还有助于开发适应这些变化并减轻其后果的方法。在冰冻圈监测领域需要作出重大的共同努力,这将需要在数据可用性和质量方面进行协调。特别是,我们认识到高海拔降水的量化是未来变化预测中不确定性的重要来源。数值建模的改进和对影响高空质量运动的过程链的更好理解是我们认为未来冰冻圈研究应关注的另外两个领域。

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