Implementation of a rigorous least-squares modification of Stokes’ formula to compute a gravimetric geoid model over Saudi Arabia (SAGEO13)

Author:

Abdalla Ahmed123,Mogren Saad4

Affiliation:

1. Department of Surveying Engineering, Faculty of Engineering Sciences, Omdurman Islamic University, Omdurman, Sudan.

2. Department of Surveying Engineering, Faculty of Engineering, University of Khartoum, Khartoum, Sudan.

3. Octantis Advanced Ltd., Geodetic Training Centre, Khartoum, Sudan.

4. Geology and Geophysics Department, College of Sciences, King Saud University, Riyadh, Saudi Arabia.

Abstract

A gravimetric geoid model (SAGEO13) is computed for the Kingdom of Saudi Arabia using a rigorous stochastic computational method. The computational methodology is based on a combination of least-squares (LS) modification of Stokes’ formula and the additive corrections for topographic, ellipsoidal, atmospheric, and downward continuation effects on the geoid solution. In this study, we used terrestrial gravity data, a digital elevation model (SRTM3), and seven global geopotential models (GGMs) to compute a new geoid model for Saudi Arabia. The least-squares coefficients are derived based on the optimisation of the input modification parameters. The gravimetric solution and its additive corrections are computed based on the optimum LS coefficients. Compared to GPS-levelling data, SAGEO13 shows a fit of 18 cm (RMS) after using a 4-parameter fitting model.

Publisher

Canadian Science Publishing

Subject

General Earth and Planetary Sciences

Reference60 articles.

1. A precise gravimetric geoid model in a mountainous area with scarce gravity data: a case study in central Turkey

2. Abdalla, A. 2009. Determination of a gravimetric geoid model of Sudan using the KTH method. Master’s thesis. Royal Institute of Technology (KTH), Stockholm, Sweden.

3. Abdalla, A. 2013a. The combined modelling of the regional quasigeoid of New Zealand using gravity and GPS-levelling data. Ph.D. thesis. University of Otago, Dunedin, New Zealand.

4. Abdalla, A. 2013b. Towards a precise gravimetric geoid model in the Saudi Arabia (SAGEO13). Quasi-geoid model for Saudi Arabia: application for levelling with GPS. Technical report. Project no. 09-spa873-02, supported financially by the National Plan for Science, Technology and Innovation (NPST) program, King Saud University.

5. A new gravimetric geoid model for Sudan using the KTH method

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