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Depth Estimation Using the Tilt Angle of Gravity Field due to the Semi-Infinite Vertical Cylindrical Source
Author(s) -
Ata Eshaghzadeh
Publication year - 2017
Publication title -
journal of geological research
Language(s) - English
Resource type - Journals
eISSN - 1687-8841
pISSN - 1687-8833
DOI - 10.1155/2017/3513272
Subject(s) - tilt (camera) , free air gravity anomaly , geodesy , geology , anomaly (physics) , geometry , gravity anomaly , mathematics , physics , paleontology , condensed matter physics , bouguer anomaly , oil field
Tilt angle filter is an interpretation method that is used to determine the source borders locations from potential fields data. Moreover, the tilt angle is applied for estimation of the anomaly source depth, such as contact-depth method and tilt-depth method. In this paper an application of the tilt angle technique obtained from the first vertical and horizontal gradients of the gravity anomaly from semi-infinite vertical cylindrical source is described. The technique is based on the tilt angle and derivatives ratio. In this approach the depth estimates are proportional to the computed tilt angles and their distances from the cross section center of the anomaly cause on the surface. This new method is termed the tilt-distance-depth (TDD). The method is demonstrated using synthetic gravity data, with and without random noise, and real gravity data from Iran. The results are also compared with the solutions from Euler deconvolution technique and inverse modelling using Modelvision software

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