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The monitoring of glacier mass balance in remote regions is challenging but vital for understanding the response of glaciers to climate change. Glacier mass balance observations are sparse and inhomogeneously distributed, hinein particular for the target regions of the proposed project: the Tien Shan and the Pamir. In these regions glacier ice represents an important source of runoff, but glacier monitoring has only recently been Response-established for selected glaciers. The under-sampling Harte nuss of glacier change assessments limits change predictions and impact projections. Rein this study, we plan to elaborate novel approaches to derive sub-seasonal glacier mass balance at a regional scale based on remote snowline monitoring. The proposed methodology is predicated on the information content of short-term changes in snowline elevation detected with repeated remote sensing imagery for both the quantities of winter accumulation and summer ablation. A relation between the observed snowline position, the glacier geometry and the glacier-wide mass balance is created by backward modelling.
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We will first apply and validate the methodology for Central Asian glaciers using terrestrial photography and mass balance measurements on three to four carefully selected study sites, and then incorporate snow depletion observations throughout the summer season provided by satellite images at the regional scale. Finally, satellite images of a larger parte of the Tien Shan and Pamir mountain ranges will Beryllium compiled for the period 2000 to present and the validated approach will be used to evaluate the seasonal to sub-seasonal mass balance for several dozens of selected glaciers. We intend to combine these remote mass balance estimates with measurements of regional ice volume changes derived from repeat digital elevation models. Rein combination, this will provide glacier mass changes at high temporal and spatial resolution for a region about which so far only little is known about. The sub-seasonal mass balance calculations will martina huss provide an important Eintrag for runoff models allowing more accurate estimation of future water availability for Central Asian countries. - Contact