Abstract
We show the numerical applicability of a multiresolution method based on harmonic splines on the 3-D ball which allows the regularized recovery of the harmonic part of the Earth's mass density distribution out of different types of gravity data, for example, different radial derivatives of the potential, at various positions which need not be located on a common sphere. This approximated harmonic density can be combined with its orthogonal anharmonic complement, for example, determined out of the splitting function of free oscillations, to an approximation of the whole mass density function. The applicability of the presented tool is demonstrated by several test calculations based on simulated gravity values derived from EGM96. The method yields a multiresolution in the sense that the localization of the constructed spline basis functions can be increased which yields in combination with more data a higher resolution of the resulting spline. Moreover, we show that a locally improved data situation allows a highly resolved recovery in this particular area in combination with a coarse approximation elsewhere which is an essential advantage of this method, for example, compared to polynomial approximation. © Journal compilation © 2008 RAS.
Author supplied keywords
Cite
CITATION STYLE
Michel, V., & Wolf, K. (2008). Numerical aspects of a spline-based multiresolution recovery of the harmonic mass density out of gravity functionals. Geophysical Journal International, 173(1), 1–16. https://doi.org/10.1111/j.1365-246X.2007.03700.x
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.