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Mapping and monitoring geological hazards using optical, LiDAR, and synthetic aperture RADAR image data

机译:使用光学,LiDAR和合成孔径RADAR图像数据绘制和监测地质灾害

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摘要

Geological hazards and their effects are often geographically widespread. Consequently, their effective mapping and monitoring is best conducted using satellite and airborne imaging platforms to obtain broad scale, synoptic coverage. With a multitude of hazards and effects, potential data types, and processing techniques, it can be challenging to determine the best approach for mapping and monitoring. It is therefore critical to understand the spatial and temporal effects of any particular hazard on the environment before selecting the most appropriate data type/s and processing techniques to apply. This review is designed to assist the decision-making and selection process when embarking on a hazard mapping or monitoring exercise. It focuses on the application of optical, LiDAR, and synthetic aperture RADAR technologies for the assessment of pre-event risk and post-event damage. Geological hazards of global interest summarized here are landslides and erosion; seismic and tectonic hazards; ground subsidence; and flooding and tsunami
机译:地质灾害及其影响通常在地理上很普遍。因此,最好使用卫星和机载成像平台进行有效的制图和监视,以获取大范围的天气覆盖范围。由于存在大量的危害和影响,潜在的数据类型和处理技术,因此确定最佳的制图和监视方法可能是一项挑战。因此,在选择最合适的数据类型和处理技术之前,了解任何特殊危害对环境的时空影响至关重要。此审查旨在协助进行危害图或监测演习时的决策和选择过程。它专注于光学,LiDAR和合成孔径RADAR技术在评估事前风险和事后损害方面的应用。这里概述的全球性地质灾害是滑坡和侵蚀。地震和构造灾害;地面沉降;洪水和海啸

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