首页> 外文期刊>Bulletin of engineering geology and the environment >Fracture mapping in challenging environment: a 3D virtual reality approach combining terrestrial LiDAR and high definition images
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Fracture mapping in challenging environment: a 3D virtual reality approach combining terrestrial LiDAR and high definition images

机译:充满挑战的环境中的断裂图:结合地面LiDAR和高清图像的3D虚拟现实方法

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摘要

The latest technological developments in computer vision allow the creation of georeferenced, non-immersive desktop virtual reality (VR) environments. VR uses a computer to produce a simulated three-dimensional world in which it is possible to interact with objects and derive metric and thematic data. In this context, modern geomatic tools enable the remote acquisition of information that can be used to produce georeferenced high-definition 3D models: these can be used to create a VR in support of rock mass data processing, analysis, and interpretation. Data from laser scanning and high quality images were combined to map deterministically and characterise discontinuities with the aim of creating accurate rock mass models. Discontinuities were compared with data from traditional engineering-geological surveys in order to check the level of accuracy in terms of the attitude of individual joints and sets. The quality of data collected through geomatic surveys and field measurements in two marble quarries of the Apuan Alps (Italy) was very satisfactory. Some fundamental geotechnical indices (e.g. joint roughness, alteration, opening, moisture, and infill) were also included in the VR models. Data were grouped, analysed, and shared in a single repository for VR visualization and stability analysis in order to study the interaction between geology and human activities.
机译:计算机视觉的最新技术发展允许创建地理参考的非沉浸式桌面虚拟现实(VR)环境。 VR使用计算机生成一个模拟的三维世界,在其中可以与对象进行交互并获取度量和主题数据。在这种情况下,现代的地理工具可以远程获取可用于生成地理参考的高清3D模型的信息:这些信息可用于创建VR,以支持岩体数据处理,分析和解释。来自激光扫描的数据和高质量图像被组合在一起,以确定性地绘制地图并表征不连续性,以创建准确的岩体模型。将不连续性与传统工程地质勘测的数据进行了比较,以检查各个接缝和组的姿态精度。通过对意大利阿普安阿尔卑斯山两个大理石采石场的地理调查和现场测量收集的数据质量非常令人满意。 VR模型中还包括一些基本的岩土工程指标(例如,接头粗糙度,蚀变,开度,湿度和填充物)。数据在单个存储库中进行分组,分析和共享,以进行VR可视化和稳定性分析,从而研究地质与人类活动之间的相互作用。

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