Point clouds of measurements in the Dechen Cave near Iserlohn, Germany

Modeling natural phenomena from 3D information enhances our understanding of the environment. Dense 3D point clouds are increasingly used as highly detailed input datasets. In addition to the capturing techniques of point clouds with LiDAR, low-cost sensors have been released in the last few years providing access to new research fields and facilitating 3D data acquisition for a broader range of applications. This letter presents an analysis of different speleothem features using 3D point clouds acquired with the gaming device Microsoft® Kinect. We compare the Kinect sensor with terrestrial LiDAR reference measurements using the KinFu pipeline for capturing complete 3D objects (< 4m**3). The results demonstrate the suitability of the Kinect to capture flowstone walls and to derive morphometric parameters of cave features. Although the chosen capturing strategy (KinFu) reveals a high correlation (R2=0.92) of stalagmite morphometry along the vertical object axis, a systematic overestimation (22% for radii and 44% for volume) is found. The comparison of flowstone wall datasets predominantly shows low differences (mean of 1 mm with 7 mm standard deviation) of the order of the Kinect depth precision. For both objects the major differences occur at strongly varying and curved surface structures (e.g. with fine concave parts).

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Cite this as

Hämmerle, Martin, Höfle, Bernhard, Fuchs, Johannes, Schröder-Ritzrau, Andrea, Vollweiler, Nicole, Frank, Norbert (2014). Dataset: Point clouds of measurements in the Dechen Cave near Iserlohn, Germany. https://doi.org/10.1594/PANGAEA.830567

DOI retrieved: 2014

Additional Info

Field Value
Imported on November 29, 2024
Last update November 29, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.830567
Author Hämmerle, Martin
Given Name Martin
Family Name Hämmerle
More Authors
Höfle, Bernhard
Fuchs, Johannes
Schröder-Ritzrau, Andrea
Vollweiler, Nicole
Frank, Norbert
Source Creation 2014
Publication Year 2014
Resource Type application/zip - filename: Hämmerle_2014
Subject Areas
Name: Geophysics

Name: HumanDimensions

Name: LandSurface

Related Identifiers
Title: Comparison of kinect and terrestrial LiDAR capturing natural karst cave 3-D objects
Identifier: https://doi.org/10.1109/LGRS.2014.2313599
Type: DOI
Relation: IsSupplementTo
Year: 2014
Source: IEEE Geoscience and Remote Sensing Letters
Authors: Hämmerle Martin , Höfle Bernhard , Fuchs Johannes , Schröder-Ritzrau Andrea , Vollweiler Nicole , Frank Norbert .