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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >NASA EOS Terra ASTER: Volcanic topographic mapping and capability
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NASA EOS Terra ASTER: Volcanic topographic mapping and capability

机译:NASA EOS Terra ASTER:火山地形图和功能

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Up-to-date, accurate topographic data are a crucial resource for volcanic research and risk mitigation efforts, in particular, for modeling volcanic flow processes at a detailed spatial resolution. In this paper, we examine the utility of the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) instrument currently operating on the NASA Terra satellite, which provides near infrared (VNIR) stereo imaging from which topography can be derived. We wrote software to generate digital elevation models (DEMs) from the ASTER level 1A product, which employs an automated stereo matching technique to calculate the parallax offsets between the images acquired by the nadir-and aft-looking sensors. Comparison of ASTER DEMs with DEMs derived from other sources (digitized 1:50 K topographic maps and aerial interferometric radar) at Ruapehu volcano reveal an RMS error of about 10 m for the ASTER DEM, in the absence of significant atmospheric water vapor. A qualitative assessment of surface features showed that the ASTER DEM is superior to the interpolated 1:50 K map product but falls short of the detail provided by aerial interferometric radar, especially in terms of stream channel preservation. A second ASTER DEM was generated for Taranaki volcano, where previously only 1:50 K topographic map data were available. Although the 2000 Space Shuttle radar topography mission (SRTM) will largely remedy the previous global paucity of adequate topographic data at volcanoes, such as Taranaki, we anticipate the problem that at active volcanoes, the topography may change significantly following activity, rendering the SRTM data inaccurate. With the high temporal coverage of the dataset, ASTER not only provides a means to update significant (>10 m) topographic measurements at active volcanoes via a time-series of DEMs, but also provides a simultaneous means to map surface cover and localized land-use via the near infrared sensors. Thus we demonstrate the potential for up-to-date volcanic economic risk assessment using geographic information systems (GIS) analysis.
机译:最新,准确的地形数据是进行火山研究和降低风险的关键资源,尤其是对于以详细的空间分辨率模拟火山流过程而言。在本文中,我们研究了目前在NASA Terra卫星上运行的高级星载热发射和反射辐射计(ASTER)仪器的实用性,该仪器提供了近红外(VNIR)立体成像,可以从中得出地形。我们编写了从ASTER 1A级产品生成数字高程模型(DEM)的软件,该产品采用自动立体匹配技术来计算天底和后视传感器获取的图像之间的视差偏移。在Ruapehu火山上,将ASTER DEM与其他来源的DEM(数字化1:50 K地形图和空中干涉雷达)进行比较,发现在没有大量大气水汽的情况下,ASTER DEM的RMS误差约为10 m。对表面特征的定性评估表明,ASTER DEM优于插值的1:50 K地图积,但未达到空中干涉雷达提供的细节,特别是在流道保持方面。为塔拉纳基火山生成了第二个ASTER DEM,以前只有1:50 K的地形图数据可用。尽管2000年航天飞机雷达地形任务(SRTM)将在很大程度上弥补以前全球在诸如塔拉纳基(Taranaki)等火山上缺乏足够的地形数据的问题,但我们预计在活火山中,活动后地形可能会发生重大变化,从而呈现SRTM数据不准确。借助数据集的高时空覆盖范围,ASTER不仅提供了一种通过DEM时序更新活动火山重要(> 10 m)地形测量值的方法,而且还提供了一种同时绘制地表覆盖率和局部陆地-通过近红外传感器使用。因此,我们证明了使用地理信息系统(GIS)分析进行最新火山经济风险评估的潜力。

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