Geoid determination using airborne vector gravimetry: Insights from a real dataset

IF 0.8 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Studia Geophysica et Geodaetica Pub Date : 2025-09-02 DOI:10.1007/s11200-024-0748-5
Ismael Foroughi, Mehdi Goli, Stephen Ferguson, Spiros Pagiatakis
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Abstract

In this contribution, we use all three components of the gravity vector observations to compute a regional geoid and demonstrate the advantages of using the horizontal components alongside the vertical component. We apply the one-step integration method within the remove-compute-restore framework; where the long-wavelength part of the geoid is recovered from Earth’s gravitational models while the harmonicity of the computational space is ensured by removing the topographic effects. We create a system of linear equations using a discretized form of the one-step integration method and use the Tikhonov technique to deal with the numerical instability due to its implicit downward continuation and to determine the geoid at higher resolution, e.g., 1 ′ × 1′. We propose a novel method to estimate the Tikhonov regularization parameter using the discrepancy principal and a stable solution of the geoid at lower resolution, e.g., 3′ × 3′. The results reported are based on real airborne gravity vector observations collected over Colorado, USA. The scattered observations at flight level are directly inverted to the disturbing potential at grid points on the reference ellipsoid, where geoid heights are then computed using Bruns formula. We evaluate the external accuracy of the geoid by comparing it with GNSS/levelling data and estimate the location-based internal uncertainties (error) of the geoid heights through formal error propagation. As part of this contribution, the airborne gravity vector data used in this study are also available for research purposes upon request to the corresponding author.

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使用航空矢量重力测量确定大地水准面:来自真实数据集的见解
在这篇文章中,我们使用重力矢量观测的所有三个分量来计算区域大地水准面,并演示了在垂直分量旁边使用水平分量的优点。我们在删除-计算-恢复框架内应用了一步积分法;其中,大地水准面长波部分从地球引力模型中恢复,同时通过消除地形影响来确保计算空间的谐波。我们使用一步积分方法的离散形式创建了一个线性方程组,并使用Tikhonov技术来处理由于其隐式向下延拓而导致的数值不稳定性,并确定更高分辨率的大地水准面,例如1 ‘ × 1 ’。我们提出了一种新的方法来估计吉洪诺夫正则化参数利用差异原则和稳定的解的大地水准面在较低的分辨率,如3 ‘ × 3 ’。报告的结果是基于在美国科罗拉多州收集的真实机载重力矢量观测。将飞行高度的散射观测直接反演为参考椭球上网格点的扰动势,然后利用布伦斯公式计算参考椭球上的大地水准面高度。我们通过将大地水准面与GNSS/水准数据进行比较来评估其外部精度,并通过形式误差传播来估计基于位置的大地水准面高度内部不确定性(误差)。作为贡献的一部分,本研究中使用的航空重力矢量数据也可应通讯作者的要求用于研究目的。
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来源期刊
Studia Geophysica et Geodaetica
Studia Geophysica et Geodaetica 地学-地球化学与地球物理
CiteScore
1.90
自引率
0.00%
发文量
8
审稿时长
6-12 weeks
期刊介绍: Studia geophysica et geodaetica is an international journal covering all aspects of geophysics, meteorology and climatology, and of geodesy. Published by the Institute of Geophysics of the Academy of Sciences of the Czech Republic, it has a long tradition, being published quarterly since 1956. Studia publishes theoretical and methodological contributions, which are of interest for academia as well as industry. The journal offers fast publication of contributions in regular as well as topical issues.
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