Title :
Results of processing and analysis of large volumes of repeat-pass InSAR data of Vancouver and Mount Meager (B.C.)
Author :
Van der Kooij, Marco ; Lambert, Anthony
Author_Institution :
Atlantis Sci. Inc., Nepean, Ont., Canada
Abstract :
A large quantity of ERS InSAR data and several scenes of Radarsat InSAR data were used to study historical deformation at Mount Meager in Northern B.C. The Mount Meager Volcanic Complex is a hazardous area showing an anomalously high frequency of catastrophic slope failures. It is also the location of Canada´s most recent explosive volcanic eruption (2350 YBP). The primary objective of processing and analysis of the SAR data was to detect and measure small deformation events on the slopes of the mountain. A similarly large number of repeated ERS SAR scenes collected over the urban area of Vancouver between 1992 and 2000 was selected for InSAR processing. The objective of the project was to investigate the potential of detecting and measuring very small deformation rates (better than 1 mm/yr) and deformation events while taking advantage of the large volume of SAR datasets. The following types of deformation were of specific interest: 1. Stability of the Fraser River Delta 2. Tidal loading 3. Subsidence patterns in urban areas 4. Deformation of individual buildings, bridges and infrastructure. This paper provides some information on the processing methodologies that were employed as well as results and interpretation of the results.
Keywords :
geodesy; geomorphology; geophysical techniques; remote sensing by radar; spaceborne radar; synthetic aperture radar; tectonics; terrain mapping; topography (Earth); British Columbia; Canada; ERS; Fraser River Delta; Mount Meager; Radarsat; SAR; Vancouver; Volcanic Complex; bridge; buildings; data processing method; deformation; deformation rate; geomorphology; geophysical measurement technique; infrastructure; land surface; land surface topography; landslide; mountain; radar remote sensing; repeat pass InSAR; rock slide; slope failure; subsidence pattern; synthetic aperture radar; tectonics; terrain mapping; tidal loading; uplift; urban area; vertical motion; volcano; Event detection; Explosives; Frequency; Hazardous areas; Layout; Rivers; Stability; Synthetic aperture radar interferometry; Urban areas; Volume measurement;
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2002. IGARSS '02. 2002 IEEE International
Print_ISBN :
0-7803-7536-X
DOI :
10.1109/IGARSS.2002.1025897