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Pan-African tectonic evolution in central and southern Cameroon: transpression and transtension during sinistral shear movements

✍ Scribed by V. Ngako; P. Affaton; J.M. Nnange; Th. Njanko


Book ID
104354148
Publisher
Elsevier Science
Year
2003
Tongue
English
Weight
678 KB
Volume
36
Category
Article
ISSN
1464-343X

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✦ Synopsis


Kinematic analysis of the central Cameroon shear zone (CCSZ) and its Sanaga fault relay, indicate early sinistral shear movement (phase D 2 ) that was later followed by a dextral shear movement (phase D 3 ) during the Pan-African orogeny. The correlation of tectonic events among the CCSZs, thrusting of the Yaounde Group and the deformation in the Lom Group indicate a diachronous deposition history of these groups, where the Yaounde Group is pre-kinematic while the sedimentary and magmatic rocks of the Lom basin are syn-kinematic. Sinistral shear movements along the CCSZ and Sanaga faults are correlated with metamorphism and thrusting of the Yaounde granulites onto the Congo craton, on one hand, and to the opening of the Lom pullapart basin, oblique to the shear zone, on the other. Kinematic interactions between shear and thrust movements characterize transpression, whereas interactions between shear and oblique normal fault movements characterize transtension. Resulting kinematic indicators show that the Lom basin represents a sinistral transtensional relay of the Sanaga fault. Greenschist-facies metamorphism in the Lom Group rocks dominantly affected by a monophase tectonic evolution were achieved during the late dextral shear movements along the Sanaga fault.