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- W2064698414 abstract "The response of glaciers to atmospheric warming has become a key issue in scientific as well as public and even political discussions about human impacts on the climate system. The predominant tendency of continued worldwide glacier shrinkage indeed constitutes one of the clearest indications in nature of rapid climate change at a global scale. The observed trend of increasingly negative mass balances is consistent with an accelerated trend in global warming and correspondingly enhanced energy flux toward the earth surface. Mountain ranges at lower latitudes have lost large percentages of their glacier areas and volumes since the end of the Little Ice Age. Many of them may become mostly or even completely de-glaciated during the coming decades. Such changes have the potential to profoundly affect environmental conditions far beyond cold mountain chains. Sea-level rise, shifting seasonality in water supply, and local formation of new lakes reflect changes in the water cycle at global, continental, and regional-to-local scales. They are accompanied by rather marked changes in cold-mountain landscape appearance, slope stability, erosion/sedimentation, and hazard conditions. Worldwide monitoring of glaciers today involves process-oriented field measurements, high-resolution geodetic information from space and new terrestrial technologies, but also faces difficult challenges of vanishing glaciers with long-term mass-balance observations. Combining rich observational data with spatio-temporal modeling increasingly helps to prepare integrated analyses of observed phenomena and with anticipating likely future developments as a basis for the planning and realization of climate adaptation strategies. This article examines the monitoring and inventory of glaciers worldwide, observed and forecasted changes, and impacts of deglaciation on geomorphic and water resources systems." @default.
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- W2064698414 date "2008-01-01" @default.
- W2064698414 modified "2023-09-24" @default.
- W2064698414 title "Historical and Holocene glacier–climate variations: General concepts and overview" @default.
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- W2064698414 doi "https://doi.org/10.1016/j.gloplacha.2007.02.001" @default.
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