...
首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >High-resolution DEM generation from spaceborne and terrestrial remote sensing data for improved volcano hazard assessment - A case study at Nevado del Ruiz, Colombia
【24h】

High-resolution DEM generation from spaceborne and terrestrial remote sensing data for improved volcano hazard assessment - A case study at Nevado del Ruiz, Colombia

机译:从太空发载和地面遥感数据的高分辨率DEM生成,改善火山危险评估 - 以哥伦比亚尼沃德尔鲁伊斯举行的案例研究

获取原文
获取原文并翻译 | 示例
           

摘要

Volcanoes with rugged terrain remain a challenging target for generating high-resolution digital elevation models (DEMs), especially in tropical areas with frequent cloud cover. Using Nevado del Ruiz volcano as an example, we combined DEMs from the TanDEM-X (TDX) satellite mission, terrestrial radar interferometry (TRI), and Structure from Motion (SfM), to generate a new DEM with 10-m spatial resolution. This is the first study combining satellite radar, ground-based radar, photography, and freely available global DEMs to generate a high-resolution DEM without data gaps. TDX data from ascending and descending orbits were combined to generate the base DEM. Instead of using a raster format to fuse DEMs generated from different data sets with different resolutions, we developed a methodology based on 3-D point clouds: 1) re-georeference the 5-m TRI and similar to 1-m SfM DEMs to the 10-m TDX DEM using the iterative closest point (ICP) algorithm to minimize the horizontal and vertical discrepancy between DEMs; then 2) merge the multiple point clouds to generate a final DEM without data gaps using an adaptive algorithm that uses two search distances to smooth the transition at the edges of different data sets. We assess the new 10-m DEM by comparing simulated inundation zones obtained with two volcano flow models, LaharZ (for lahars) and VolcFlow (for pyroclastic flows), and find significant differences with respect to the 30-m SRTM DEM. Our LaharZ simulation over the new DEM shows a longer lahar run-out distance. For pyroclastic flows, the VolcFlow simulation over the new DEM produces highly channelized flows over the steep portions of a river channel and gives a larger extent of thicker deposits compared to those obtained with the 30-m SRTM DEM. Quantitative and qualitative geomorphic analysis suggests that up-to-date DEMs with high spatial resolution (similar to 10 m or even better) need to be generated to improve volcano hazard assessment for active volcanoes.
机译:具有坚固性地形的火山仍然是产生高分辨率数字高度模型(DEM)的具有挑战性的目标,尤其是云覆盖频繁的热带地区。使用Nevado del Ruiz Volcano作为示例,我们组合来自Tandem-x(TDX)卫星任务,地面雷达干涉测量(TRI)和来自运动(SFM)的结构的DEM,以产生具有10米空间分辨率的新型DEM。这是第一项研究结合卫星雷达,基于基础雷达,摄影和自由可用的全球DEM的研究,以产生没有数据间隙的高分辨率DEM。组合来自升序和降序轨道的TDX数据以生成基本DEM。而不是使用具有不同分辨率的不同数据集生成的熔炉格式的熔炉格式,而是基于3-D点云开发了一种方法:1)重新地地理调整5-M三,并类似于1 M个SFM DEM。 10-M TDX DEM使用迭代最接近点(ICP)算法,以最小化DEM之间的水平和垂直差异;然后,2)合并多点云以生成使用使用两个搜索距离的自适应算法的数据间隙的最终DEM,以平滑不同数据集的边缘的转换。通过比较用两个火山流模型,拉哈尔斯(莱格尔斯)和火山流动(用于发动机流量)来评估新的10 M个DEM,并找到与30-M SRTM DEM的显着差异。我们的Laharz仿真在新的DEM上显示了更长的拉哈尔流出距离。对于发动机流量,新DEM上的Volcflow仿真在河流通道的陡峭部分上产生高度通道的流量,并与用30-M SRTM DEM获得的那些相比,在更大的沉积物的程度上产生更大的沉积物。定量和定性地貌分析表明,需要产生具有高空间分辨率(类似于10米或甚至更好)的最新DEM,以改善活性火山的火山危害评估。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号