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An optical laser device for mapping 3D geometry of underwater karst structures: first tests in the Ox Bel’Ha system, Yucatan, Mexico

机译:用于绘制水下岩溶结构3D几何图形的光学激光设备:墨西哥尤卡坦州Ox Bel’Ha系统的首次测试

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摘要

In the course of extended hydrological studies in the coastal Karst plain of Yucatan, near the town of Tulum amongst others, a novel laser scanning device was developed and applied for the acquisition of the 3d-geometry of ground water conduits. The method is derived from similar industrial systems and for the first time adapted to the specific measurement conditions in underwater cave systems. The device projects a laser line over the whole perimeter at a certain position. This line represents the intersection of a plane with the cave walls. The line is imaged with a wide angle camera system. Through proper design and calibration of the device it is possible to derive the true scale geometry of the perimeter via special image processing techniques. By acquiring regularly spaced images it is possible to reconstruct the true scale and 3 d-shape of a tunnel through the incorporation of location and attitude data. In a first test in the Ox Bel Ha under-water cave system, about 800 metres of tunnels have been scanned down to water depths of 20 metres. The raw data is further interpolated using the ODSIM-algorithm in order to delineate the 3D geometry of the cave system. The method provides easy, operable acquisition of the 3-D geometry of caves in clear water with superior resolution and speed and significantly facilitates the measurement in underwater tunnels as well as in dry tunnels. The data gathered represents crucial input to the study of the state, dynamics and genesis of the complex karst water regime.
机译:在尤卡坦州沿海地区喀斯特平原(图卢姆镇附近)等广泛的水文研究过程中,开发了一种新型激光扫描设备,并将其用于获取地下水管道的3d几何形状。该方法源自类似的工业系统,并且首次适用于水下洞穴系统中的特定测量条件。该设备将激光线投射到整个周边的某个位置。这条线表示平面与洞壁的交点。该线用广角相机系统成像。通过对设备进行适当的设计和校准,可以通过特殊的图像处理技术得出周边的真实比例尺几何形状。通过获取规则间隔的图像,可以通过合并位置和姿态数据来重建隧道的真实比例和3d形状。在Ox Bel Ha水下洞穴系统的首次测试中,大约800米的隧道被扫描到水深20米。使用ODSIM算法进一步对原始数据进行插值,以描绘洞穴系统的3D几何形状。该方法可轻松,可操作地获取清澈水中洞穴的3-D几何形状,具有出色的分辨率和速度,并显着促进了水下隧道以及干燥隧道中的测量。所收集的数据代表了对复杂岩溶水状况的状态,动态和成因进行研究的关键输入。

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    Schiller A; Renard Philippe;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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