Volta

The north‐south tilt in the Australian Height Datum is explained by the ocean's mean dynamic topography

Unknown authors · 2012
hash_id: 5c1c86a8a71d07918e1f5456e8a2321a2a1bc2bd743b17d4ac912e6c75f24de6 · DOI: 10.1029/2012jc007974

Using geodetic and oceanographic data, we show that the apparent north‐south slope between the Australian Height Datum (AHD) and the geoid is caused almost completely by the ocean's time‐mean dynamic topography (MDT). This is because the AHD was constrained to zero height at local mean sea level at multiple tide gauges around the Australian continent. Using MDT models and corrected leveling data, almost all of the apparent north‐south slope can be removed from the AHD. An auxiliary observation is that a satellite‐only MDT model based on only around one year of GOCE data generates results commensurate with geodetic, oceanographic and combined MDT models.

Reference & gravity metrics

Citations
0
Citations / yr
0.00
RCR
Mass
0.00
Depth
0.00
Momentum
0.000
Burn rate
0.00 ATP/day
Start price
25.00 ATP

Secondary-market trade history

No secondary-market trades recorded for this Volta yet.

References (0)

No outbound references recorded.

Cited by (2)

The permanent tide in GPS positioning secondary
Impacts of geodynamic phenomena on systems for height and gravity secondary