Javascript must be enabled to continue!
Comparison of spherical cap and rectangular harmonic analysis of airborne vector gravity data for high-resolution (1.5 km) local geopotential field models over Tanzania
View through CrossRef
SUMMARYThis study examines local geopotential field modelling over a mountainous region in Tanzania using vector airborne gravity data. We use the adjusted spherical cap and rectangular harmonic analyses. Both methods are based on expansion of gravitational potential into a series of orthogonal harmonic basis functions of local support in such a way that the expansion coefficients are determined by gravity observations. All three components of gravity vector are simultaneously inverted to derive the geopotential coefficients. In order to evaluate the accuracy of the local models, independent checkpoints are selected within the study region and around its boundary and the computed gravity vectors are compared with the independent gravity observations. The results show an excellent agreement with root mean square error (RMSE) of < 1.6 mGal over the study area. On the contrary, the RMSEs of global geopotential models against the checkpoints data are 7 mGal for the models up to the maximum degree of 2190 (a resolution of ∼9.1 km) and 5 mGal to 5399 (∼3.7 km). Our local models are significantly more accurate than the state-of-the-art global models and fully exploit the airborne vector data with the measurement error of ∼1 mGal. We also present the regional models constrained only by radial (vertical) or by lateral (horizontal) gravity observations. Those models are considerably less accurate than the one from 3-D gravity data inversion. Lastly, the regional models are validated against topography data. It is found that the gravity–topography correlation is 0.8–0.9 at 100 km, 0.5 at 20 km and higher than the correlations of the global models at all frequencies. The gravity–topography admittances estimated from our regional models indicate ∼130 mGal km−1 and imply the effective density of 2500 kg m−3 for topographical mass.
Oxford University Press (OUP)
Title: Comparison of spherical cap and rectangular harmonic analysis of airborne vector gravity data for high-resolution (1.5 km) local geopotential field models over Tanzania
Description:
SUMMARYThis study examines local geopotential field modelling over a mountainous region in Tanzania using vector airborne gravity data.
We use the adjusted spherical cap and rectangular harmonic analyses.
Both methods are based on expansion of gravitational potential into a series of orthogonal harmonic basis functions of local support in such a way that the expansion coefficients are determined by gravity observations.
All three components of gravity vector are simultaneously inverted to derive the geopotential coefficients.
In order to evaluate the accuracy of the local models, independent checkpoints are selected within the study region and around its boundary and the computed gravity vectors are compared with the independent gravity observations.
The results show an excellent agreement with root mean square error (RMSE) of < 1.
6 mGal over the study area.
On the contrary, the RMSEs of global geopotential models against the checkpoints data are 7 mGal for the models up to the maximum degree of 2190 (a resolution of ∼9.
1 km) and 5 mGal to 5399 (∼3.
7 km).
Our local models are significantly more accurate than the state-of-the-art global models and fully exploit the airborne vector data with the measurement error of ∼1 mGal.
We also present the regional models constrained only by radial (vertical) or by lateral (horizontal) gravity observations.
Those models are considerably less accurate than the one from 3-D gravity data inversion.
Lastly, the regional models are validated against topography data.
It is found that the gravity–topography correlation is 0.
8–0.
9 at 100 km, 0.
5 at 20 km and higher than the correlations of the global models at all frequencies.
The gravity–topography admittances estimated from our regional models indicate ∼130 mGal km−1 and imply the effective density of 2500 kg m−3 for topographical mass.
Related Results
Using spherical scaling functions in scalar and vector airborne gravimetry
Using spherical scaling functions in scalar and vector airborne gravimetry
<p>Airborne gravimetry is capable to provide Earth&#8217;s gravity data of high accuracy and spatial resolution for any area of interest, in particular for ha...
Prevalence of community-acquired pneumonia among Egyptian children from urban areas of the Delta region: a cross-sectional study
Prevalence of community-acquired pneumonia among Egyptian children from urban areas of the Delta region: a cross-sectional study
Background
Community-acquired pneumonia (CAP) is one of the leading causes of morbidity and mortality among children under 5 years in developing countries. It i...
Gravity data reduction, Bouguer anomaly, and gravity disturbance
Gravity data reduction, Bouguer anomaly, and gravity disturbance
Each point on the earth has a gravity and gravity potential value. Surfaces formed by connecting points with equal gravity potential values are called equipotential surfaces or lev...
Spherical harmonic transforms up to degree 100,000 and beyond using distributed-memory systems
Spherical harmonic transforms up to degree 100,000 and beyond using distributed-memory systems
Thanks to existing algorithms for Legendre functions, it is fairly possible to perform spherical harmonic transforms up to degrees as high as a few tens of thousands. In fact, many...
Antarctic Time-Variable Regional Gravity Field Model Derived from Satellite Line-of-Sight Gravity Differences and Spherical Cap Harmonic Analysis
Antarctic Time-Variable Regional Gravity Field Model Derived from Satellite Line-of-Sight Gravity Differences and Spherical Cap Harmonic Analysis
This study focuses on the development of a time-variable regional geo-potential model for Antarctica using the spherical cap harmonic analysis (SCHA) basis functions. The model is ...
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Comparative Analysis of Return, Net Flow and Expense Ratio of Selected Open – Ended Mutual Fund Schemes
Comparative Analysis of Return, Net Flow and Expense Ratio of Selected Open – Ended Mutual Fund Schemes
Mutual fund industry in India has revealed a significant growth since its inception in the year 1963 even then it is far behind the developed as well as most of the emerging market...
Adaptive designed eniluracil + capecitabine phase 2 trial in advanced or metastatic breast cancer patients.
Adaptive designed eniluracil + capecitabine phase 2 trial in advanced or metastatic breast cancer patients.
TPS1133
Background:
Ethynyl-uracil (eniluracil or 6422), an irreversible inhibitor of the dihydropyrimidine dehydrogenase enzyme that ...

