Kinematics of a deep‐seated landslide derived from photogrammetric, GPS and geophysical data
暂无分享,去创建一个
[1] John F Nye,et al. On the Theory of the Advance and Retreat of Glaciers , 1963 .
[2] U. Zischinsky. Über Sackungen , 1969 .
[3] L. A. Walters,et al. DEPENDENCE OF IN-SITU COMPRESSIONAL-WAVE VELOCITY ON POROSITY IN UNSATURATED ROCKS? , 1972 .
[4] K. Kraus,et al. Determination of terrain models in wooded areas with airborne laser scanner data , 1998 .
[5] Karl Kraus,et al. Photogrammetrie, Band 3, Topographische Informationssysteme , 2000 .
[6] A. Kääb. Monitoring high-mountain terrain deformation from repeated air- and spaceborne optical data: examples using digital aerial imagery and ASTER data , 2002 .
[7] On the Capability of GPS for Landslide Monitoring , 2003 .
[8] Paolo Baldi,et al. Global Positioning Systems and digital photogrammetry for the monitoring of mass movements: application to the Ca' di Malta landslide (northern Apennines, Italy) , 2003 .
[9] Christophe Delacourt,et al. Seventeen years of the “La Clapière” landslide evolution analysed from ortho-rectified aerial photographs , 2003 .
[10] Ewald Brückl,et al. Geophysical models of the Lesachriegel and Gradenbach deep-seated mass-movements (Schober range, Austria) , 2006 .