A study of the self-potential field produced by a polarised inclined sheet in an electrically homogeneous and transversely anisotropic ground


Γ. Α. ΣΚΙΑΝΗΣ
Τ. Δ. ΠΑΠΑΔΟΠΟΥΛΟΣ
Δ. Α. ΒΑΪΟΠΟΥΛΟΣ
Résumé

In the present paper, the self-potential (sp) field is studied, which is produced by an inclined sheet (thin dyke) in an electrically homogeneous and transversely anisotropic ground. At first, the mathematical expression for the sp anomaly is deduced, by integration of the formula for the self-potential field produced by a point pole in a transversely anisotropic medium (Skianis & Herntmdez 1999). Then, the behavior of the sp curve is studied, for various angles of schistosity. The whole anomaly may be displaced along the horizontal axis and deformed in terms of amplitude and shape. Particular emphasis is given on the enhancement and suppression of the positive center of the self-potential, which depends on the values and orientations of the schistosity angle of the ground and the dip angle of the inclined sheet. These deformations of the sp anomaly, may introduce significant errors in the calculation of the parameters of the polarized body, if ground anisotropy is not taken into account. Therefore, new methodologies have to be developed, for a reliable quantitative interpretation of self-potential field data. In this paper, a direct interpretation method is proposed, which consists of two steps: In step one, the parameters of the inclined sheet are determined, assuming a homogeneous and isotropic ground. In this stage, any quantitative interpretation method, referred in the international bibliography, may be used. Secondly, the true parameters of the dyke are estimated, by a set of transformations in which the anisotropy coefficient and the schistosity angle are introduced. In order to apply this method, a priori information about ground anisotropy should be available, by dc geoelectrical and geological investigations. The efficiency of the method was tested on a synthetic model. In the first stage, the quantitative interpretation method of Murty & Haricharan 1985 was employed. In the second stage, the calculated parameters of the first step, served as input values of the transformations, and the real parameters of the inclined sheet were estimated. There was a good agreement between the parameter values of the synthetic model and the ones found by the proposed method. The results and conclusions of this paper, may be useful in detecting sulfide mineralization deposits or graphite.

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  • Rubrique
  • Geophysics
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Références
MURTY, Β. V. S & HARICHARAN, P., 1985: Nomogram for the complete interpretation of spontaneous potential profiles over sheet-like and cylindrical two-dimensional sources. Geophysics 50, 1127-1135
PARKHOMENKO, E. I., 1967: Electrical Properties of rocks. In: Keller, G. V. (Ed). Translation and supplement. Plenum, New York. 314p.
RAO, D. A. & BABU, H. V., 1983: Quantitative interpretation of sp anomalies due to two-dimensional sheet-like bodies. Geophysics 48, 1659-1664.
SKIANIS, G. ΑΙ., PAPADOPOULOS, T, VAIOPOULOS, D. & NIKOLAOU, S., 1995: A new method of quantitative interpretation of sp anomalies produced by a polarized inclined sheet. Geophysical Prospecting 43, 677-691.
SKIANIS, G. AI. & HERNANDEZ, M. C., 1999: Effects of transverse electric anisotropy on self-potential anomalies. Journal of Applied Geophysics 41, 93-104.
SKIANIS, G. ΑΙ., PAPADOPOULOS, T. D. & VAIOPOULOS, D. Α., 2000: A study of the sp field produced by a polarized sphere in an electrically homogeneous and transversely anisotropic ground. In: Development and Application of Computer Techniques to Environmental Studies VIII. G. Ebarra-Berastegi, C. A. Brebbia, P. Zannetti (Editors). WIT Press, Southampton. 185-194.
SUNDARARAJAN, N., SRIVINASA RAO, P. & SUNITHA, V., 1998: An analytical method to interpret selfpotential anomalies caused by 2-D inclined sheets. Geophysics 63, 1551-1555.
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