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Published in: Rock Mechanics and Rock Engineering 11/2016

04-07-2016 | Original Paper

Assessment of the Accuracy of Close Distance Photogrammetric JRC Data

Authors: Dong Hyun Kim, George Poropat, Ivan Gratchev, Arumugam Balasubramaniam

Published in: Rock Mechanics and Rock Engineering | Issue 11/2016

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Abstract

By using close range photogrammetry, this article investigates the accuracy of the photogrammetric estimation of rock joint roughness coefficients (JRC), a measure of the degree of roughness of rock joint surfaces. This methodology has proven to be convenient both in laboratory and in site conditions. However, the accuracy and precision of roughness profiles obtained from photogrammetric 3D images have not been properly established due to the variances caused by factors such as measurement errors and systematic errors in photogrammetry. In this study, the influences of camera-to-object distance, focal length and profile orientation on the accuracy of JRC values are investigated using several photogrammetry field surveys. Directional photogrammetric JRC data are compared with data derived from the measured profiles, so as to determine their accuracy. The extent of the accuracy of JRC values was examined based on the error models which were previously developed from laboratory tests and revised for better estimation in this study. The results show that high-resolution 3D images (point interval ≤1 mm) can reduce the JRC errors obtained from field photogrammetric surveys. Using the high-resolution images, the photogrammetric JRC values in the range of high oblique camera angles are highly consistent with the revised error models. Therefore, the analysis indicates that the revised error models facilitate the verification of the accuracy of photogrammetric JRC values.

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Metadata
Title
Assessment of the Accuracy of Close Distance Photogrammetric JRC Data
Authors
Dong Hyun Kim
George Poropat
Ivan Gratchev
Arumugam Balasubramaniam
Publication date
04-07-2016
Publisher
Springer Vienna
Published in
Rock Mechanics and Rock Engineering / Issue 11/2016
Print ISSN: 0723-2632
Electronic ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-016-1042-9

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