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Production of high-resolution digital terrain models in mountain regions to support risk assessment

机译:在山区生产高分辨率数字地形模型以支持风险评估

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摘要

Demand for high-accuracy digital terrain models (DTMs) in the Alpine region has been steadily increasing in recent years in valleys as well as high mountains. In the former, the determination of the geo-mechanical parameters of rock masses is the main objective; global warming, which causes the retreat of glaciers and the reduction of permafrost, is the main drive of the latter. The consequence is the instability of rock masses in high mountains: new cost-effective monitoring techniques are required to deal with the peculiar characteristics of such environment, delivering results at short notice. After discussing the design and execution of photogrammetric surveys in such areas, with particular reference to block orientation and block control, the paper describes the production of DTMs of rock faces and glacier fronts with light instrumentation and data acquisition techniques, allowing highly automated data processing. To this aim, the PhotoGPS technique and structure from motion algorithms are used to speed up the orientation process, while dense matching area-based correlation techniques are used to generate the DTMs.
机译:近年来,在山谷和高山地区,阿尔卑斯地区对高精度数字地形模型(DTM)的需求一直在稳定增长。前者的主要目的是确定岩体的地质力学参数。导致冰川退缩和永久冻土减少的全球​​变暖是后者的主要驱动力。结果是山区的岩体不稳定:需要新的具有成本效益的监测技术来应对这种环境的特殊特征,并在短时间内提供结果。在讨论了此类领域的摄影测量勘测的设计和执行方式之后,特别是针对块定向和块控制,本文介绍了使用光仪器和数据采集技术生产岩面和冰川锋面的DTM,从而实现高度自动化的数据处理。为了达到这个目的,使用了来自运动算法的PhotoGPS技术和结构来加快定位过程,同时使用基于密集匹配区域的相关技术来生成DTM。

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