会议论文详细信息
World Multidisciplinary Earth Sciences Symposium 2017
Application of Terrestrial Laser Scanning to Study the Geometry of Slender Objects
Muszynski, Zbigniew^1 ; Milczarek, Wojciech^1
Wroclaw University of Science and Technology, Faculty of Geoengineering, Mining and Geology, Geodesy and Geoinformatics Unit, ul. Wybrzeze Wyspianskiego 27, Wroclaw
50-370, Poland^1
关键词: Air temperature;    Engineering practices;    Geodetic measurements;    Horizontal cross section;    Industrial chimneys;    Industrial structures;    Regular inspections;    Terrestrial laser scanning;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/95/4/042069/pdf
DOI  :  10.1088/1755-1315/95/4/042069
来源: IOP
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【 摘 要 】

Slender objects are a special group among the many types of industrial structures. These objects are characterized by a considerable height which is at least several times bigger than the diameter of the base. Mainly various types of industrial chimneys, as well as truss masts, towers, radio and television towers and also windmill columns belong to this group. During their operation slender objects are exposed to a number of unfavourable factors. For this reason, these objects require regular inspection, including geodetic measurements. In the paper the results of geodetic control of geometry of industrial chimney with a height of 120 m has been presented. The measurements were made by means of terrestrial laser scanning technique under rather unfavourable conditions (at night, during snowfall, with low air temperature) which allowed to verify the real usefulness and accuracy of this technique in engineering practice. On the basis of point cloud, the values of deviations from the vertical for main axis of the chimney have been calculated. Using point cloud, the selected horizontal cross sections of chimney were analysed and were compared with the archival geodetic documentation. On this basis the final conclusions about the advantages and limitations of the using of terrestrial laser scanning technique for the control of geometry of high industrial chimneys have been formulated.

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