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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Analysis of potential debris flow source areas on Mount Shasta, California, by using airborne and satellite remote sensing data
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Analysis of potential debris flow source areas on Mount Shasta, California, by using airborne and satellite remote sensing data

机译:利用机载和卫星遥感数据分析加利福尼亚州沙斯塔山的潜在泥石流源区域

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Remote sensing data from NASA's Airborne Visible/Infrared Imaging Spectrometer (AVIRIS) and the first spaceborne imaging spectrometer, Hyperion, show hydrothermally altered rocks mainly composed of natroalunite, kaolinite, cristobalite, and gypsum on both the Mount Shasta and Shastina cones. Field observations indicate that much of the visible altered rock consists of talus material derived from fractured rock zones within and adjacent to dacitic domes and nearby lava flows. Digital elevation data were utilized to distinguish steeply sloping altered bedrock from more gently sloping talus materials. Volume modeling based on the imagery and digital elevation data indicate that Mount Shasta drainage systems contain moderate volumes of altered rock, a result that is consistent with Mount Shasta's Holocene record of mostly small to moderate debris flows. Similar modeling for selected areas at Mount Rainier and Mount Adams, Washington, indicates larger altered rock volumes consistent with the occurrence of much larger Holocene debris flows at those volcanoes. The availability of digital elevation and spectral data from spaceborne sensors, such as Hyperion and the Advanced Spaceborne Thermal Emission and Reflectance Radiometer (ASTER), greatly expands opportunities for studying potential debris flow source characteristics at stratovolcanoes around the world.
机译:来自NASA的机载可见/红外成像光谱仪(AVIRIS)和第一台太空成像光谱仪Hyperion的遥感数据显示,在Shasta山和Shastina锥上,水热蚀变的岩石主要由钠铁铝榴石,高岭石,方石英和石膏组成。现场观察表明,许多可见的蚀变岩石是由距层材料构成的,距层材料是从大圆顶内部和附近的熔岩流和附近的熔岩流破裂的岩石带中提取的。利用数字高程数据来区分陡坡改变的基岩和较缓坡的距骨材料。基于图像和数字高程数据的体积建模表明,沙斯塔山排水系统包含中等体积的蚀变岩石,这一结果与沙斯塔山全新世记录的大部分为中小型泥石流一致。华盛顿雷尼尔山和亚当斯山选定区域的相似模型表明,较大的蚀变岩石量与这些火山中出现的全新世泥石流相一致。来自Hyperion和先进的星载热发射和反射辐射计(ASTER)等星载传感器的数字高程和光谱数据的可用性极大地扩展了研究世界各地平流层火山潜在泥石流源特征的机会。

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