MARINE GEOID UNDULATION ASSESSMENT OVER SOUTH CHINA SEA USING GLOBAL GEOPOTENTIAL MODELS AND AIRBORNE GRAVITY DATA

Author:

Yazid N. M.,Din A. H. M.,Omar K. M.,Som Z. A. M.,Omar A. H.,Yahaya N. A. Z.,Tugi A.

Abstract

Abstract. Global geopotential models (GGMs) are vital in computing global geoid undulations heights. Based on the ellipsoidal height by Global Navigation Satellite System (GNSS) observations, the accurate orthometric height can be calculated by adding precise and accurate geoid undulations model information. However, GGMs also provide data from the satellite gravity missions such as GRACE, GOCE and CHAMP. Thus, this will assist to enhance the global geoid undulations data. A statistical assessment has been made between geoid undulations derived from 4 GGMs and the airborne gravity data provided by Department of Survey and Mapping Malaysia (DSMM). The goal of this study is the selection of the best possible GGM that best matches statistically with the geoid undulations of airborne gravity data under the Marine Geodetic Infrastructures in Malaysian Waters (MAGIC) Project over marine areas in Sabah. The correlation coefficients and the RMS value for the geoid undulations of GGM and airborne gravity data were computed. The correlation coefficients between EGM 2008 and airborne gravity data is 1 while RMS value is 0.1499.In this study, the RMS value of EGM 2008 is the lowest among the others. Regarding to the statistical analysis, it clearly represents that EGM 2008 is the best fit for marine geoid undulations throughout South China Sea.

Publisher

Copernicus GmbH

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Optimizing the Integration of Gravity Data Inputs for Geoid Modelling over Peninsular Malaysia;2024 20th IEEE International Colloquium on Signal Processing & Its Applications (CSPA);2024-03-01

2. Assessment of Global Geopotential Models for Modelling Malaysia Marine Geoid;International Journal of Integrated Engineering;2022-09-06

3. Optimised gravity anomaly fields from along-track multi-mission satellite altimeter over Malaysian seas;Terrestrial, Atmospheric and Oceanic Sciences;2022-02-09

4. Estimating bathymetry from multi-mission satellite altimetry data using Gravity-Geologic Method over Malaysian Seas;Terrestrial, Atmospheric and Oceanic Sciences;2021

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