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LONG-TERM MONITORING OF GLACIER CHANGE AT GOSSNITZKEES (AUSTRIA) USING TERRESTRIAL PHOTOGRAMMETRY

机译:使用陆地摄影测量,Gossnitzkees(奥地利)的长期监测冰川变化

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Gossnitzkees is a small heavily debris-covered cirque glacier (49.8 ha) located in the Schober Mountains, Hohe Tauern Range, Austrian Alps. Glacier nourishment is mainly due to avalanches descending from its surrounding headwalls. Gossnitzkees is the largest glacier in the Schober Mountains and is highly representative of the other 25 glaciers of this mountain group. All glaciers of this mountain group have receded continuously since 1850. Ongoing atmospheric warming sustains excessive glacier melt. In 1988 a long-term monitoring program was started at Gossnitzkees using terrestrial photogrammetry in order to document and quantify glacier change. The surveys have been repeated from time to time using different types of cameras. Recent surveys date from 2009, 2012, and 2015. The aim of this paper is twofold: firstly, to investigate whether or not the rather complex photogrammetric evaluation process using a conventional photogrammetric workstation (mostly with a limited degree of automation for terrestrial applications) can be replaced by modern fully automated Structure-from-Motion (SfM) based approaches, and secondly, to document and quantify the glacier change at Gossnitzkees based on available information augmented by results obtained from the most recent surveys mentioned. Over the last 27 years (1988-2015) the terminus of Gossnitzkees has receded by 179 m and the glacier ice has melted at a mean annual rate of about 1.5 m/year. The Schober Mountains are in the process of deglaciation and the glaciers will likely disappear within the next two decades. Based on our practical investigations we found out that SfM-based software is in general capable of handling terrestrial photographs in a fully automatic mode supporting challenging glacier studies.
机译:Gossnitzkees是一个小型碎片覆盖的Cirque冰川(49.8公顷),位于奥地利奥尔斯省苏尔·塔尔斯山脉,奥地利山脉。冰川营养主要是由于其周围的头壁下降的雪崩。 Gossnitzees是Schober Mountains最大的冰川,是这座山地集团其他25个冰川的高度代表性。自1850年以来,这座山地集团的所有冰川都持续了持续退休。持续的大气变暖维持过度冰川熔体。 1988年,使用地面摄影措施在Gossnotzkees开始了长期监测计划,以便记录和量化冰川变化。使用不同类型的摄像机不时地重复调查。最近的调查日期为2009年,2012年和2015年。本文的目的是双重的:首先,调查使用传统摄影测量工作站的相当复杂的摄影测量评估过程(主要是用于地面应用的有限自动化)基于现代的全自动结构从 - 基于现代的完全自动化结构 - 动作(SFM)的方法,其次是根据从最近提到的最近调查中获得的结果增强的可用信息来记录和量化Gossnitzkees的冰川变化。在过去的27年(1988-2015)中,Gossnitzees的终点已经取得了179米,冰川冰融化了约1.5米/年的均值。斯通山脉在令人沮丧的过程中,冰川可能会在未来二十年内消失。根据我们的实际调查,我们发现基于SFM的软件通常能够在支持具有挑战性的冰川研究的全自动模式下处理地面照片。

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