International Archives of the Photogrammetry, Remote S
ensing and Spatial Information Sciences, Vol XXXV, Part B7. Istanbul 2004
AINT Tee
no velocity data {
de
Figure 7. Mean annual horizontal creep velocity (cm a) at the
Hinteres Langtalkar rock glacier for the time period 1969-1974.
REFERENCES
Arenson. L., Hoelze, M., Springman, S., 2002. Borehole
Deformation Measurements and Internal Structure of Some
Rock Glaciers in Switzerland. Permafrost and Periglacial
Processes, 13(2), pp. 117-135.
Baltsavias, E.P., 1991. Multiphoto Geometrically Constrained
Matching. Mitteilungen des Instituts für Geodäsie und
Photogrammetrie, ETH Zürich, 49, 221 p.
n
Baltsavias, E.P., 1996. Digital ortho-images — a powerful tool
for the extraction of spatial and geo-information. ISPRS Journal
of Photogrammetry and Remote Sensing, 51, pp. 63-67.
898
Barsch, D., 1996. Rockglaciers: Indicators for the Present and
Former Geoecology in High Mountain Environments. Springer
Series in Physical Environment, 331 p.
Bauer, A., Paar, G., Kaufmann, V., 2003. Terrestrial laser
scanning for rock glacier monitoring. In: Proceedings of the Sth
Int. Conf. on Permafrost, Zurich, Vol. 1, A.A. Balkema
Publishers, pp. 55-60).
Grün, A. & Baltsavias, E.P.. 1988. Geometrically constrained
multiphoto matching. In: PE&RS (54) 5, pp. 633-641.
Haeberli, W., 2000. Modern Research Perspectives Relating to
Permafrost Creep and Rock Glaciers: A Discussion. Permafrost
and Periglacial Processes, 11(4), pp. 290-293.
Harris. C., Davies. M.C.R.; Etzelmiiller, B., 2001. The
Assessment of Potential Geotechnical Hazards Associated with
Mountain Permafrost in a Warming Global Climate. Permafrost
and Periglacial Processes. 12(1), pp. 145-156.
Küüb, A., Kaufmann, V., Ladstüdter, R., Eiken, T., 2003 /ftock
glacier dynamics: implications — from high-resolution
measurements of surface velocity fields. In: Proceedings of the
8th Int. Conf. on Permafrost, Zurich, Vol. 1, A.A. Balkema
Publishers, pp. 501-506.
Kaufmann, V. & Ladstidter, R., 2002. Monitoring of active
rock glaciers by means of digital photogrammetry. In: IAPRS,
Graz, Austria, XXXIV, Part 3B, Comm. III, pp. 108-111.
Kaufmann, V. & Ladstüdter, R., 2003. Quantitative analysis of
rock glacier creep by means of digital photogrammetry using
multi-temporal aerial photographs: two case studies in the
Austrian Alps. In: Proc. of the 8th Int. Conf. on Permafrost,
Zurich, Vol. 1, A.A. Balkema Publishers, pp. 525-530.
Kenyi, L.W. & Kaufmann, V., 2003. Measuring rock glacier
surface deformation using SAR interferometry. In: Proceedings
of the 8th Int. Conf. on Permafrost, Zurich, Vol. 1, AA.
Balkema Publishers. pp. 537-541.
Krainer. K. & Mostler, W., 2001. Der aktive Blockgletscher im
Hinteren Langtal Kar, GoBnitztal (Schobergruppe, Nationalpark
Hohe Tauern). In: Wissenschaftliche Mitteilungen aus dem
Nationalpark Hohe Tauern, Matrei, 6, pp. 139-168.
Ladanyi, B., 2003. Reology of ice/rock systems. In:
Proceedings of the 8th Int. Conf. on Permafrost, Zurich, Vol. 1,
A.A. Balkema Publishers, pp. 621-626.
Lieb, GK.. 1987. Die Gletscher und Blockgletscher im
Kürntner Teil der Schobergruppe und ihre Entwicklung seit dem
Spätglazial. Unpubl. Dissertation, Univ. of Graz, 286 p.
Schenk, T., Li, J.-C., Toth, C.K., 1990. Hierarchical approach
to reconstruct surfaces by using iteratively rectified imagery. In:
Close-Range ~~ Photogrammetry Meets Machine Vision,
International Archives of Photogrammetry and Remote Sensing,
28 (5/1), SPIE 1395 (1), pp. 464-470.
ACKNOWLEDGEMENTS
The kind support of M. Gruber from Vexcel Imaging Austria is
very much appreciated. Aerial photographs: © Austrian Federal
Office of Metrology and Surveying, Vienna, 2000 and 2001.