Volta

Moving mountains: reevaluating the elevations of Colorado mountain summits using modern geodetic techniques

Unknown authors · 2024
hash_id: 4edda90a334d949827bc828d4e0e6e57ea857988453ffbd63e688531367215d6 · DOI: 10.1007/s00190-024-01831-8

Abstract One of the most challenging environments for accurate geoid models is in high, rugged mountain areas. Orthometric heights derived from GNSS and a geoid model can easily have errors at the decimeter level. To investigate the effect of geoid model variability on the elevations of peaks in high, rugged mountain areas, this paper is focused on the “Fourteeners” of Colorado, USA (a group of about 60 peaks that are above 14,000 feet = 4267.2 m). Airborne LiDAR data are used to determine geometric (ellipsoidal) heights, which first requires removing a hybrid geoid model, as the LiDAR data is originally provided as orthometric heights. We quantify a significant improvement when using these derived ellipsoidal heights compared with the original orthometric …

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The Permanent Tide In Height Systems secondary