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AIRGrav
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Production surveys have been flown under a variety of conditions including offshore, at a constant altitude over rolling terrain, and with a loose drape over high mountains (>3,000 m). Because the system is relatively tolerant of turbulence, it works well on drape surveys and in moderate to severe turbulence. Sander Geophysics recently
completed a combined gravity and magnetic survey in the
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Results from numerous AIRGrav
surveys have been rigorously analyzed to determine system performance and
optimum processing parameters. The graph on the right shows rms gravity
noise plotted against filter length (20 s = 1km). The graph shows that the
noise level drops off quickly as the filter length increases, which
indicates that noise is concentrated in the higher frequencies. The graph
also clearly illustrates the relationship between accuracy and resolution,
and how one can be traded off against the other depending on the client’s
objectives.
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The graph on the
left demonstrates the effect of averaging a number of lines (a process which
is similar to stacking seismic data), which can be achieved by flying
closely spaced lines and applying a filter with a wavelength longer than the
line spacing. The graph shows rms gravity noise plotted against the number
of lines averaged, for various filter lengths. Using this procedure, the
final grid data will have a noise level significantly lower than the
individual profile data. |
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Shown below are typical AIRGrav survey parameters. As described above, the accuracy and resolution of the gravity data depends on the aircraft speed and the line spacing. |
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AIRGrav services include survey planning, data acquisition, preliminary processing in the field, final data processing to terrain corrected Bouguer Gravity and a comprehensive technical report. SGL also offers integrated interpretation of AIRGrav, aeromagnetic and other data sets. |
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