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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Consideration of the errors inherent in mapping historical glacier positions in Austria from the ground and space (1893-2001)
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Consideration of the errors inherent in mapping historical glacier positions in Austria from the ground and space (1893-2001)

机译:考虑从地面和太空测绘奥地利历史冰川位置时固有的误差(1893-2001年)

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摘要

The historical record of in situ measurements of the terminus positions of the Pasterze and Kleines Fleisskees glaciers in the eastern Alps of Austria is used to assess uncertainties in the measurement of decadal scale changes using satellite data. Topographic maps beginning in 1893, and satellite data from 1976 to 2001, were studied in concert with ground measurements to measure glacier changes. Ground measurements show that the tongue of the Pasterze Glacier receded similar to 1150 m from 1893 to 2001, while satellite-derived measurements, using August 2001 Landsat Enhanced Thematic Mapper Plus (ETM+) data registered to an 1893 topographic map, show a recession of 1300-1800 m, with an unknown error. The measurement accuracy depends on the registration technique and the pixel resolution of the sensor when two satellite images are used. When using topographic maps, an additional source of error is the accuracy of the glacier position shown on the map. Between 1976 and 2001, Landsat-derived measurements show a recession of the terminus of the Pasterze Glacier of 479 136 m (at an average rate of 19.1 m a(-1)) while measurements from the ground showed a recession of 428 m (at an average rate of 17.1 m a(-1)). Four-meter resolution Ikonos satellite images from 2000 and 2001 reveal a shrinkage of 22,096 +/- 46 m(2) in the Pasterze tongue. The nearby Kleines Fleisskees glacier lost 30% of its area between 1984 and 2001, and the area of exposed ice increased by 0.44 +/- 0.0023 km(2), according to Landsat satellite measurements. As more recent satellite images are utilized, especially data that are geocoded, the uncertainty associated with measuring glacier changes has decreased. It is not possible to assess the uncertainty when an old topographic map and a satellite image are coregistered. (C) 2003 Elsevier Inc. All rights reserved. [References: 30]
机译:奥地利东部阿尔卑斯山Pasterze和Kleines Fleisskees冰川终点位置的原位测量历史记录用于评估使用卫星数据测量十年尺度变化的不确定性。与地面测量结果一起研究了始于1893年的地形图和1976年至2001年的卫星数据,以测量冰川变化。地面测量结果表明,从1893年到2001年,巴斯德冰川的舌头后退约1150 m,而使用源自1893年地形图的Landsat Enhanced Thematic Mapper Plus(ETM +)数据进行的卫星衍生测量表明,衰退了1300年-1800 m,有未知错误。当使用两个卫星图像时,测量精度取决于配准技术和传感器的像素分辨率。使用地形图时,另一个错误源是地图上显示的冰川位置的准确性。在1976年至2001年之间,Landsat得出的测量结果显示Pasterze冰川终点的衰退为479 136 m(平均速率为19.1 ma(-1)),而地面测量结果显示的衰退为428 m(平均速率17.1 ma(-1))。 2000年和2001年的四米分辨率Ikonos卫星图像显示出Pasterze舌头缩小了22,096 +/- 46 m(2)。根据Landsat卫星测量,在1984年至2001年之间,附近的Kleines Fleisskees冰川损失了30%的面积,裸露的冰面积增加了0.44 +/- 0.0023 km(2)。随着利用最新的卫星图像,尤其是经过地理编码的数据,与测量冰川变化相关的不确定性已经降低。将旧的地形图和卫星图像共同注册时,无法评估不确定性。 (C)2003 Elsevier Inc.保留所有权利。 [参考:30]

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