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High-Resolution Dems of Active Volcanoes from Tandem-X Data: Implications for Flow Modeling and Hazard Assessment

机译:来自TANDEM-X数据的活性火山的高分辨率DEM:对流动建模和危险评估的影响

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The bistatic acquisition mode of the TanDEM-X radar satellite mission provides a new reliable source for generating high-resolution (~10m) digital elevation models (DEMs) of active volcanoes. For high relief-mountainous areas with steep slopes - like stratovolcanoes - geometric distortions considerably affect the accuracy of the DEMs. The TanDEM-X system allow for the first time access to high-resolution DEMs for both orbits (ascending and descending) which, by using an adaptive approach to combine multiple acquisitions from different viewing angles, considerably increase the accuracy of the DEM over difficult terrain like active volcanoes. By integrating these DEMs into standard numerical flow modeling, we are able to enhance the performance of standard terrain-dependent volcanic flow models and reduce the uncertainty that inevitably arises in application of topographic models of varying resolutions. Our study pushes the limits on where and how SAR data can be used to derive accurate DEMs under extreme conditions.
机译:串联X雷达卫星任务的BIStatic采集模式提供了一种新的可靠源,用于产生活性火山的高分辨率(〜10M)数字高度模型(DEM)。对于具有陡峭斜坡的高浮雕 - 山区 - 就像Stratovolcanoes - 几何扭曲显着影响DEM的准确性。 TANDEM-X系统允许第一次访问轨道(上升和下降)的高分辨率DEM,这通过使用自适应方法将多个获取从不同的观察角组合,显着提高了DEM在困难的地形上的准确性像活跃的火山。通过这些数字高程模型集成到标准的数字流建模,我们可以提高标准的地形相关的火山流模型的性能,并降低不可避免地出现在不同的分辨率地形模型的应用程序的不确定性。我们的研究推动了在极端条件下可以使用SAR数据来派生DEMS的位置和SAR数据的限制。

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