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Geomorphometric analysis of cave ceiling channels mapped with 3-D terrestrial laser scanning

机译:3-D地面激光扫描绘制的洞穴顶棚通道的地貌分析

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The change of hydrological conditions during the evolution of caves in carbonate rocks often results in a complex subterranean geomorphology, which comprises specific landforms such as ceiling channels, anastomosing half tubes, or speleothems organized vertically in different levels. Studying such complex environments traditionally requires tedious mapping; however, this is being replaced with terrestrial laser scanning technology. Laser scanning overcomes the problem of reaching high ceilings, providing new options to map underground landscapes with unprecedented level of detail and accuracy. The acquired point cloud can be handled conveniently with dedicated software, but applying traditional geomorphometry to analyse the cave surface is limited. This is because geomorphometry has been focused on parameterization and analysis of surficial terrain. The theoretical and methodological concept has been based on two-dimensional (2-D) scalar fields, which are sufficient for most cases of the surficial terrain. The terrain surface is modelled with a bivariate function of altitude (elevation) and represented by a raster digital elevation model. However, the cave is a 3-D entity; therefore, a different approach is required for geomorphometric analysis. In this paper, we demonstrate the benefits of high-resolution cave mapping and 3-D modelling to better understand the palaeohydrography of the Domica cave in Slovakia. This methodological approach adopted traditional geomorphometric methods in a unique manner and also new methods used in 3-D computer graphics, which can be applied to study other 3-D geomorphological forms.
机译:碳酸盐岩洞穴演化过程中的水文条件变化通常会导致复杂的地下地貌,其中包括特定的地貌,例如顶棚通道,半管形吻合或泥炭纪垂直分布在不同的层次。传统上,研究这种复杂的环境需要繁琐的映射。但是,这已被地面激光扫描技术所取代。激光扫描解决了达到高高的天花板的难题,提供了前所未有的细节和准确性来绘制地下景观的新选项。可以使用专用软件方便地处理获取的点云,但是应用传统的地貌法来分析洞穴表面是有限的。这是因为地貌测量一直专注于表面地形的参数化和分析。理论和方法论的概念是基于二维(2-D)标量场,对于大多数表面地形而言,这已经足够了。用海拔(高程)的二元函数对地形表面进行建模,并用栅格数字高程模型表示。但是,这个洞穴是一个3D实体。因此,地貌分析需要使用不同的方法。在本文中,我们演示了高分辨率洞穴映射和3-D建模的好处,以更好地了解斯洛伐克Domica洞穴的古水文技术。这种方法论方法以独特的方式采用了传统的地貌测量方法,并且在3-D计算机图形学中使用了新的方法,可以用于研究其他3-D地貌形式。

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