A novel efficient forward modeling algorithm of gravitational fields in spherical coordinates is developed for 3D large-scale gravity inversion problems. 3D Gauss-Legendre quadrature (GLQ) is used to calculate the gravitational fields of mass distributions discretized into tesseroids. Equivalence relations in the kernel matrix of the forward-modeling are exploited to decrease storage and computation time. The numerical investigations demonstrate that the computation time of the proposed algorithm is reduced by approximately two orders of magnitude, and the memory requirement is reduced by N'l times compared with the traditional GLQ method, where N'l is the number of model elements in the longitudinal direction. These significant improvement...
A collection of command-line programs for modeling the gravitational potential, acceleration, and gr...
Gravity data inversion is a fundamental tool for geological exploration. A large amount of algorithm...
We present an accurate method for the calculation of gravitational potential (GP), vector (GV), and ...
An efficient forward modeling algorithm for calculation of gravitational fields in spherical coordin...
An efficient forward modeling algorithm for calculation of gravitational fields in spherical coordin...
We have developed the open-source software Tesseroids, a set of command-line programs to perform for...
We have developed the open-source software Tesseroids, a set of command-line programs to perform for...
Rigorous modelling of the spherical gravitational potential spectra from the volumetric density and ...
Abstract In this paper, we propose an inverse method for full gravity gradient tensor data in the sp...
Several alternative gravity forward modelling methodologies and associated numerical codes with thei...
Obtaining a three-dimensional (3D) density distribution within a reasonable time is one of the most ...
<p>A collection of command-line programs for modeling the gravitational potential, acceleration, and...
This article reviews a spectral forward gravity field modelling method that was initially designed f...
We present a new methodology to compute the gravitational fields generated by tesseroids (spherical ...
We present an approach to calculate scalar and tensor gravity utilizing the massively parallel archi...
A collection of command-line programs for modeling the gravitational potential, acceleration, and gr...
Gravity data inversion is a fundamental tool for geological exploration. A large amount of algorithm...
We present an accurate method for the calculation of gravitational potential (GP), vector (GV), and ...
An efficient forward modeling algorithm for calculation of gravitational fields in spherical coordin...
An efficient forward modeling algorithm for calculation of gravitational fields in spherical coordin...
We have developed the open-source software Tesseroids, a set of command-line programs to perform for...
We have developed the open-source software Tesseroids, a set of command-line programs to perform for...
Rigorous modelling of the spherical gravitational potential spectra from the volumetric density and ...
Abstract In this paper, we propose an inverse method for full gravity gradient tensor data in the sp...
Several alternative gravity forward modelling methodologies and associated numerical codes with thei...
Obtaining a three-dimensional (3D) density distribution within a reasonable time is one of the most ...
<p>A collection of command-line programs for modeling the gravitational potential, acceleration, and...
This article reviews a spectral forward gravity field modelling method that was initially designed f...
We present a new methodology to compute the gravitational fields generated by tesseroids (spherical ...
We present an approach to calculate scalar and tensor gravity utilizing the massively parallel archi...
A collection of command-line programs for modeling the gravitational potential, acceleration, and gr...
Gravity data inversion is a fundamental tool for geological exploration. A large amount of algorithm...
We present an accurate method for the calculation of gravitational potential (GP), vector (GV), and ...