Shape and depth solutions from gravity data using correlation factors between successive least‐squares residuals

Author:

Abdelrahman El‐Sayed M.1,El‐Araby Hesham M.1

Affiliation:

1. Geophysics Department, Faculty of Science, Cairo University, Giza, Egypt

Abstract

The gravity anomaly expression produced by most geologic structures can be represented by a continuous function in both shape (shape factor) and depth variables with an amplitude coefficient related to the mass. Correlation factors between successive least‐squares residual gravity anomalies from a buried vertical cylinder, horizontal cylinder, and sphere are used to determine the shape and depth of the buried geologic structure. For each shape factor value, the depth is determined automatically from the correlation value. The computed depths are plotted against the shape factor representing a continuous correlation curve. The solution for the shape and depth of the buried structure is read at the common intersection of correlation curves. This method can be applied to a Bouguer anomaly profile consisting of a residual component caused by local structure and a regional component. This is a powerful technique for automatically separating the Bouguer data into residual and regional polynomial components. This method is tested on theoretical examples and a field example. In both cases, the results obtained are in good agreement with drilling results.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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