首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >The application of COSI-Corr to determine dune system dynamics in the southern Namib Desert using ASTER data
【24h】

The application of COSI-Corr to determine dune system dynamics in the southern Namib Desert using ASTER data

机译:利用ASTER数据应用COSI-Corr确定纳米比亚南部沙漠的沙丘系统动力学

获取原文
获取原文并翻译 | 示例
           

摘要

The Coregistration of Optically Sensed Images and Correlation (COSI-Corr) algorithm was used to estimate dune migration and sand flux rates from a series of remotely-sensed optical image pairs. Several areas of barchan and transverse dunes transport sand along definite pathways, feeding the southern part of the Namib Sand Sea from beaches and deflationary basins in the Sperrgebiet. We give a detailed description of the pre- and post-processing routines used for our COSI-Corr analysis, and we evaluate the sub-pixel dune migration results at the dune and dune-field scales. The best set of parameters for the application of the algorithm was systematically derived, resulting in methodological refinements of the cross-correlation windows. The Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) sensor aboard the Terra satellite provided the remote sensing imagery. Few comparisons have been made between dune migration measurements using COSI-Corr and other types of change detection analysis, and few dune fields have served as test cases for COSI-Corr. We suggest that analysis and interpretation of COSI-Corr output from ASTER data is more valuable if combined with other image analysis techniques, such as manual digitization of dunes in a geographic information system (GIS), processing of write memory function insertion (WMFI) imagery and multispectral image (MSI) analysis of composition. The dune migrations estimated from COSI-Corr results were validated using GIS and WMFI, and later MSI analysis added an important regional, contextual framework of sand transport pathways. The synthesis of these works lends more confidence to understanding the Namib dune system's dynamics and provides a basis for future comparisons to other dune fields.
机译:光学图像和相关性的共容性(COSI-Corr)算法用于从一系列遥感光学图像对中估计沙丘迁移和砂通量率。 Barchan和横向沙丘的几个区域沿着确定的路径运输沙子,从Sperrgebiet的海滩和通缩盆地向Namib沙海南部提供饲料。我们将详细描述用于COSI-Corr分析的预处理程序和后处理程序,并在沙丘和沙丘场尺度上评估亚像素沙丘迁移结果。系统地推导了适用于该算法的最佳参数集,从而对互相关窗口进行了方法上的改进。 Terra卫星上的先进星载热发射和反射辐射计(ASTER)传感器提供了遥感图像。在使用COSI-Corr进行的沙丘迁移测量与其他类型的变化检测分析之间,几乎没有进行比较,并且很少有沙丘场用作COSI-Corr的测试案例。我们建议,如果与其他图像分析技术(例如,地理信息系统(GIS)中的沙丘手动数字化,写入存储功能插入(WMFI)图像的处理)结合使用,则ASTER数据对COSI-Corr输出的分析和解释将更有价值。和多光谱图像(MSI)成分分析。使用GIS和WMFI验证了从COSI-Corr结果估计的沙丘迁移,随后的MSI分析增加了重要的区域性砂运输路径背景框架。这些作品的综合使人们对了解纳米布沙丘系统的动力学更有信心,并为将来与其他沙丘领域进行比较提供了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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