Subsurface Tectonic Inferences of the Adamawa Region of Cameroon from EMAG2 Magnetic Data

Author:

Njeudjang Kasi1ORCID,Yandjimain Justine2,Bouba Apollinaire3,Djousse Kanouo Boris Merlain4,Teikeu William Assatse5,Djongyang Noël6ORCID,Ndougsa-Mbarga Théophile2

Affiliation:

1. Department of Quality Industrial Safety and Environment, National Advanced School of Mines and Petroleum Industries, University of Maroua, P.O. Box 46, Maroua, Cameroon

2. Department of Physics, Higher Teacher’s Training College, University of Yaoundé I, P.O. Box 47, Yaoundé, Cameroon

3. Department of Physics, Advanced Teacher’s Training College, University of Maroua, P.O. Box: 46, Maroua, Cameroon

4. Department of Rural Engineering, Faculty of Agronomy and Agricultural Sciences, University of Dschang, P.O. Box: 222, Dschang, Cameroon

5. Laboratory of Geophysics and Geoexploration, Department of Physics, University of Yaoundé I, P.O. Box 812, Yaoundé, Cameroon

6. Department of Renewable Energy, National Advanced School of Engineering of Maroua, University of Maroua, P.O. Box 46, Maroua, Cameroon

Abstract

The study area includes an area between 6° to 8°N and 11° to 15°E. Geologically, it belongs to Precambrian basement (granites, gneisses), Proterozoic, and Archean (volcanic) series, showing the main heat sources of Cameroon. The purpose of this study deals to analyze and interpret the EMAG2 magnetic data in the Adamawa area using various advanced processing techniques. Thus, the mapping and depth estimation of underground structures are realized. The analysis of aeromagnetic map of the reduction to equator (RTE) in Adamawa area reveals rapidly evolving subsurface geological presented its lithological and structural. In the same, the power spectrum-processing tool clearly emphasizes shallow and deep underground heat sources. Two magnetic source location methods (source parameter imaging and analytical signal) are used to characterize of the source. The estimated magnetic source depths from source parameter imaging (SPI) are between 0.3 km and 22 km. The analytical signal ranges from 0.2 km to 31 km. In addition, the comparative study of 2D magnetic modelling showed that the basement is affected by the faults in the main directions of N-S, NE-SW, NW-SE, and WNW-ESE. The resulting structural map based on the tectonic map of Adamawa magnetic basement is a document that can simplify future hydrological and geothermal exploration.

Publisher

Hindawi Limited

Subject

Geophysics,Water Science and Technology

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