Zhang Congyuan, Chen Jianping, Li Ping, Han Sipeng, Xu Jie
Research Center of Applied Geology of China Geological Survey, Chengdu, 610000, China.
School of Earth Sciences and Resources, China University of Geosciences (Beijing), Beijing, 100083, China.
Sci Rep. 2024 Sep 3;14(1):20485. doi: 10.1038/s41598-024-71113-y.
In recent years, the application of real scene 3D technology has become widespread in urban planning and cultural heritage protection. However, there has been relatively little attention paid to the construction of real scene 3D models for special natural landscapes such as caves. Given the global distribution of karst topography and the large number of naturally developed caves with diverse types, unique landscape styles, and significant scientific value, this paper enriches the research in this field. By combining ground-based and aerial remote sensing techniques, and based on 3D laser scanning and photogrammetry, we have successfully constructed a real scene 3D model of the internal structure of a karst cave with a precision better than 4 cm. Utilizing Unmanned Aerial Vehicle (UAV) oblique photography, we established a real scene 3D model of the external karst landform with a precision better than 2 cm. We also integrated the internal and external 3D models of the cave, developing a new, complete, and high-precision method for constructing real scene 3D models of karst cave landscapes. Furthermore, we proposed a method for texture reproduction in the dark environment inside the caves, enhancing the reproduction and visual appeal of the real interior. The establishment of high-precision real scene 3D models can not only serve as an effective tool for scientific research on caves but also, as replicas of the real world, play a crucial role in public dissemination and education, thereby enhancing public understanding of cave geological landscapes.
近年来,实景三维技术在城市规划和文化遗产保护中的应用已十分广泛。然而,对于洞穴等特殊自然景观的实景三维模型构建,关注相对较少。鉴于岩溶地貌在全球的分布情况以及大量自然形成、类型多样、景观风格独特且具有重要科学价值的洞穴,本文丰富了该领域的研究。通过结合地面和航空遥感技术,基于三维激光扫描和摄影测量,我们成功构建了一个精度优于4厘米的岩溶洞穴内部结构实景三维模型。利用无人机倾斜摄影,我们建立了精度优于2厘米的岩溶地貌外部实景三维模型。我们还整合了洞穴的内外三维模型,开发出一种全新、完整且高精度的岩溶洞穴景观实景三维模型构建方法。此外,我们提出了一种洞穴内部黑暗环境下的纹理再现方法,增强了真实内部的再现效果和视觉吸引力。高精度实景三维模型的建立不仅可以作为洞穴科学研究的有效工具,还能作为现实世界的复制品,在公众传播和教育中发挥关键作用,从而增进公众对洞穴地质景观的了解。