On the Orientation of Fractures with Transpressional and Transtensional Wrenches in Pre-Existing Faults
- 1 State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Beijing, China
- 2 College of Geosciences, China University of Petroleum, Beijing, China
Abstract
The orientation of fractures with transpressional and transtensional wrenches in pre-existing faults has not been quantitatively determined. Based on Coulomb failure criterion and Byerlee’s frictional sliding criterion, this paper has indicated quantitative geometric relationships between the pre-existing fault and the local induced principal stress axes caused by the rejuvenation of the pre-existing fault. For a hidden pre-existing fault with some cohesion, the angles between the local induced principal stress axes and the pre-existing fault quantitatively vary with the applied stress and the cohesion coefficient, the ratio of the thickness of the cover layer to the thickness of the whole wrench body, whether transpressional or transtensional wrenches occur. For a surface pre-existing fault with zero cohesion, the angles between the pre-existing fault and the local induced principal stress axes are related to the rock inner frictional angle regardless of both the applied stress and the cohesion coefficient where transpressional wrenches occur, and the local induced maximum principal stress axis is identical with the applied maximum principal stress axis where transtensional wrenches occur. Therefore, the geometric relationships between the pre-existing faults and their related fractures are defined, because the local induced principal stress axes determine the directions of the related fractures. The results can be applied to pre-existing weak fabrics. They can help to understand and analyze wrench structures in outcrops or subsurface areas. They are of significance in petroleum exploration.
- Lowell, J.D. (1985) Structural Styles in Petroleum Exploration. OGCI Publications, Tulsa.
- Chen, S.P., Zhou, X.H., Tang, L.J., Wang, Y.B., Lü, D.Y., Sun, M.S. and Qu, D.M. (2010) Wrench-Related Folding: A Case Study of Bohai Sea Basin, China. Marine and Petroleum Geology, 27, 179-190. https://doi.org/10.1016/j.marpetgeo.2009.08.004
- Faulkner, D.R., Jackson, C.A.L., Lunn, R.J., Schlische, R.W., Shipton, Z.K., Wibberley, C.J. and Withjack, M.O. (2010) A Review of Recent Developments Concerning the Structure, Mechanics and Fluid Flow Properties of Fault Zones. Journal of Structural Geology, 32, 1557-1575. https://doi.org/10.1016/j.jsg.2010.06.009
- Tavani, S., Quintà, A. and Granado, P. (2011) Cenozoic Right-Lateral Wrench Tectonics in the Western Pyrenees (Spain): The Ubierna Fault System. Tectonophysics, 509, 238-253. https://doi.org/10.1016/j.tecto.2011.06.013
- Allen, P.A. and Allen, J.R. (2013) Basin Analysis: Principles and Application to Petroleum Play Assessment. Third Edition, Wiley and Blackwell, Hoboken.
- Babaahmadi, A. and Rosenbaum, G. (2014) Late Mesozoic and Cenozoic Wrench Tectonics in Eastern Australia: Insights from the North Pine Fault System (Southeast Queensland). Journal of Geodynamics, 73, 83-99. https://doi.org/10.1016/j.jog.2013.10.001
- Alsop, G.I., Weinberger, R., Marco, S. and Levi, T. (2018) Fault and Fracture Patterns around a Strike-Slip Influenced Salt Wall. Journal of Structural Geology, 106, 103-124. https://doi.org/10.1016/j.jsg.2017.10.010
- Anderson, H., Walsh, J.J. and Cooper, M.R. (2018) The Development of a Regional-Scale Intraplate Strike-Slip Fault System: Alpine Deformation in the North of Ireland. Journal of Structural Geology, 116, 47-63. https://doi.org/10.1016/j.jsg.2018.07.002
- Belferman, M., Katsman, R. and Agnon, A. (2018) Effect of Large-Scale Surface Water Level Fluctuations on Earthquake Recurrence Interval under Strike-Slip Faulting. Tectonophysics, 744, 390-402. https://doi.org/10.1016/j.tecto.2018.06.004
- Chen, S.P., Xu, S.S., Cai, Y. and Ma, X.D. (2018) Wrench Related Faults and Their Control on the Tectonics and Eocene Sedimentation in the L13-L15 Sub-Sag Area, Pearl River Mouth Basin, China. Marine Geophysical Research, 39, 363-381. https://doi.org/10.1007/s11001-017-9328-1
- Ghamrya, M.N.E., Amawyb, M.E. and Hagagb, W. (2020) The Role of Late Cretaceous Wrench Tectonics in Hydrocarbon Endowment in El-Gindi Basin, Northern Western Desert, Egypt. Marine and Petroleum Geology, 112, 1-14. https://doi.org/10.1016/j.marpetgeo.2019.104093