Quantifying discontinuity orientation and persistence on high mountain rock slopes and large landslides using terrestrial remote sensing techniques

被引:171
作者
Sturzenegger, M. [1 ]
Stead, D. [1 ]
机构
[1] Simon Fraser Univ, Dept Earth Sci, Burnaby, BC V5A 1S6, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
LASER SCANNER; DIGITAL PHOTOGRAMMETRY; FRANK SLIDE; MODEL; LIDAR; TOPOGRAPHY; RESOLUTION; GEOLOGY; ALBERTA; OUTCROP;
D O I
10.5194/nhess-9-267-2009
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
This paper describes experience gained in the application of terrestrial digital photogrammetry and terrestrial laser scanning for the characterization of the structure of high mountain rock slopes and large landslides. A methodology allowing the creation and registration of 3-D models with limited access to high mountain rock slopes is developed and its accuracy verified. The importance of occlusion, ground resolution, scale and reflectivity are discussed. Special emphasis is given to the concept of observation scale and resulting scale bias and its influence on discontinuity characterization. The step-path geometry of persistent composite surfaces and its role in remote sensing measurements are described. An example of combined terrestrial digital photogrammetry and terrestrial laser scanning applied in the generation of a 3-D model of the South Peak of Turtle Mountain, the location of the Frank Slide, is presented. The advantages gained from the combined use of these techniques and the potential offered through long-range terrestrial digital photogrammetry, using high focal length lenses up to 400 mm is illustrated. Special emphasis is given to the potential of this specific technique, which has to the authors knowledge rarely been documented in the geotechnical literature.
引用
收藏
页码:267 / 287
页数:21
相关论文
共 71 条
[31]  
JABOYEDOFF M, 2004, P 4 CAN C GEOH 20 24
[32]   Structural analysis of Turtle Mountain (Alberta) using digital elevation model: Toward a progressive failure [J].
Jaboyedoff, Michel ;
Couture, Rejean ;
Locat, Pascal .
GEOMORPHOLOGY, 2009, 103 (01) :5-16
[33]  
JONES PB, 1993, B CAN PETROL GEOL, V41, P232
[34]  
Kemeny J., 2006, Laser and Photogrammetric Methods for Rock Face Characterization workshop, P49
[35]   Application of digital photogrammetry to complex topography for geomorphological research [J].
Lane, SN ;
James, TD ;
Crowell, MD .
PHOTOGRAMMETRIC RECORD, 2000, 16 (95) :793-821
[36]  
LANGENBERG CW, 2006, 200601 EUB AGS
[37]   Optimization of LiDAR scanning and processing for automated structural evaluation of discontinuities in rockmasses [J].
Lato, Matt ;
Diederichs, Mark S. ;
Hutchinson, D. Jean ;
Harrap, Rob .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2009, 46 (01) :194-199
[38]   Angular resolution of terrestrial laser scanners [J].
Lichti, DD ;
Jamtsho, S .
PHOTOGRAMMETRIC RECORD, 2006, 21 (114) :141-160
[39]   Combined digital photogrammetry and time-of-flight laser scanning for monitoring cliff evolution [J].
Lim, M ;
Petley, DN ;
Rosser, NJ ;
Allison, RJ ;
Long, AJ ;
Pybus, D .
PHOTOGRAMMETRIC RECORD, 2005, 20 (110) :109-+
[40]   Unlocking the spatial dimension: digital technologies and the future of geoscience fieldwork [J].
Mccaffrey, KJW ;
Jones, RR ;
Holdsworth, RE ;
Wilson, RW ;
Clegg, P ;
Imber, J ;
Hollman, N ;
Trinks, I .
JOURNAL OF THE GEOLOGICAL SOCIETY, 2005, 162 :927-938