Convex-up Style of Deformation within Grabens in Regions of Incomplete Crossing Conjugate Normal Faults: A Numerical Simulation Investigation and Case Study

Zheng Li, Kai Wang, Xiong Xiong, Bing Zhou

Journal of Earth Science ›› 2024, Vol. 35 ›› Issue (3) : 839-849. DOI: 10.1007/s12583-022-1709-y
Stuctural Geology and Geophysics

Convex-up Style of Deformation within Grabens in Regions of Incomplete Crossing Conjugate Normal Faults: A Numerical Simulation Investigation and Case Study

Author information +
History +

Abstract

Crossing conjugate normal faults (CCNFs) are extensively developed in many hydrocarbon-producing basins, generally existing in the form of incomplete CCNFs. Nevertheless, the effect of the non-conjugate zone of the CCNFs on the conjugate relay zone post late tectonic action has not been previously studied. We use 3D elastic-plastic modeling to investigate the influence of incomplete (i.e., partially intersecting) CCNFs on the pattern of deformation of strata in the intersection region. A series of model simulations were performed to examine the effects of horizontal tectonic extension, fault size, and fault depth on the deformation of conjugate relay zones of incomplete CCNFs. Our analyses yielded the following results. (1) The model of incomplete conjugation predicts a convex-up style of deformation in the conjugate graben region superimposed on overall subsidence under applied horizontal tectonic extension. (2) The degree of convex-up deformation of the conjugate graben depends on the influence of the non-conjugate zone on the conjugate relay zone, which varies with the amount of horizontal tectonic extension, fault size, and fault burial depth. (3) Our results indicate that incomplete CCNFs can form convex-up deformation, similar to that in the Nanpu Sag area and provide a sound understanding of hydrocarbon migration and accumulation.

Keywords

incomplete conjugate normal fault / conjugate graben / convex-up deformation / hydrocarbons / Nanpu Sag / tectonics

Cite this article

Download citation ▾
Zheng Li, Kai Wang, Xiong Xiong, Bing Zhou. Convex-up Style of Deformation within Grabens in Regions of Incomplete Crossing Conjugate Normal Faults: A Numerical Simulation Investigation and Case Study. Journal of Earth Science, 2024, 35(3): 839‒849 https://doi.org/10.1007/s12583-022-1709-y

References

[]
Anderson E M. . The Dynamics of Faulting, 1951 Edinburgh Oliver & Boyd 206
[]
Castagna J. Exploration Questions and Answers: The Sequel. The Leading Edge, 1996, 15(1): 43-45,
CrossRef Google scholar
[]
Childs C, Worthington R P, Walsh J J, et al.. Conjugate Relay Zones: Geometry of Displacement Transfer between Opposed-Dipping Normal Faults. Journal of Structural Geology, 2019, 118: 377-390,
CrossRef Google scholar
[]
Drucker D C, Prager W. Soil Mechanics and Plastic Analysis or Limit Design. Quarterly of Applied Mathematics, 1952, 10(2): 157-165,
CrossRef Google scholar
[]
Drummond C, Israelachvili J. Fundamental Studies of Crude Oil-Surface Water Interactions and Its Relationship to Reservoir Wettability. Journal of Petroleum Science and Engineering, 2004, 45(1/2): 61-81,
CrossRef Google scholar
[]
Ferrill D A, Morris A P, Stamatakos J A, et al.. Crossing Conjugate Normal Faults. AAPG Bulletin, 2000, 84(10): 1543-1559
[]
Horsfield W T. Contemporaneous Movement along Crossing Conjugate Normal Faults. Journal of Structural Geology, 1980, 2(3): 305-310,
CrossRef Google scholar
[]
Liotta D, Ranalli G. Correlation between Seismic Reflectivity and Rheology in Extended Lithosphere: Southern Tuscany, Inner Northern Apennines, Italy. Tectonophysics, 1999, 315(1/2/3/4): 109-122,
CrossRef Google scholar
[]
Liu X Y, Chen H H, Xiao X W, et al.. Overpressure Evolution Recorded in Fluid Inclusions in the Dongpu Depression, Bohai Bay Basin, North China. Journal of Earth Science, 2022, 33(4): 916-932,
CrossRef Google scholar
[]
Maerten L, Willemse E J M, Pollard D D, et al.. Slip Distributions on Intersecting Normal Faults. Journal of Structural Geology, 1999, 21(3): 259-272,
CrossRef Google scholar
[]
Matsuda Y, Iwase Y. Numerical Simulation of Rock Fracture Using Three-Dimensional Extended Discrete Element Method. Earth, Planets and Space, 2002, 54(4): 367-378,
CrossRef Google scholar
[]
McGarr A. On the State of Lithospheric Stress in the Absence of Applied Tectonic Forces. Journal of Geophysical Research: Solid Earth, 1988, 93(B11): 13609-13617,
CrossRef Google scholar
[]
Nicol A, Walsh J J, Watterson J, et al.. Three-Dimensional Geometry and Growth of Conjugate Normal Faults. Journal of Structural Geology, 1995, 17(6): 847-862,
CrossRef Google scholar
[]
Pattillo J, Nicholls P J. A Tectonostratigraphic Framework for the Vulcan Graben, Timor Sea Region. The APPEA Journal, 1990, 30(1): 27,
CrossRef Google scholar
[]
Qi J F, Zhang Y W, Lu K Z, et al.. Extensional Pattern and Dynamic Process of the Cenozoic Rifting Basin in the Bohai Bay. Experimental Petroleum Geology, 1995, 17(4): 316-323 (in Chinese with English Abstract)
[]
Savage H M, Cooke M L. The Effect of Non-Parallel Thrust Fault Interaction on Fold Patterns. Journal of Structural Geology, 2004, 26(5): 905-917,
CrossRef Google scholar
[]
Schwarz H U, Kilfitt F W. Confluence and Intersection of Interacting Conjugate Faults: A New Concept Based on Analogue Experiments. Journal of Structural Geology, 2008, 30: 1126-1137,
CrossRef Google scholar
[]
Tian Z-Y, Han P, Xu K-D. The Mesozoic-Cenozoic East China Rift System. Tectonophysics, 1992, 208(1/2/3): 341-363,
CrossRef Google scholar
[]
Wang K, Xiong X, Zhou Y M, et al.. Three-Dimensional Thermo-Rheological Structure of the Lithosphere in the North China Craton Determined by Integrating Multiple Observations: Implications for the Formation of Rifts. Science China Earth Sciences, 2020, 63(7): 969-984,
CrossRef Google scholar
[]
Wang Z, Tong D J, Gao M H, et al.. Development of Extensional Decollement Faults and Its Petroleum Implications in Wushi East Subsag, Beibuwan Basin. Earth Science, 2022, 47(7): 2509-2520 (in Chinese with English Abstract)
[]
Watterson J, Nicol A, Walsh J J, et al.. Strains at the Intersections of Synchronous Conjugate Normal Faults. Journal of Structural Geology, 1998, 20(4): 363-370,
CrossRef Google scholar
[]
Woods E P. Vulcan Sub-Basin Fault Styles—Implications for Hydrocarbon Migration and Entrapment. The APPEA Journal, 1992, 32(1): 138,
CrossRef Google scholar
[]
Yang R C, Li Y, Fan A P, et al.. Syndepositional Fault Control on Sandbody Distribution at Two Eocene Confluence Deltas in the Dongying Depression, Bohai Bay Basin (Eastern China). Journal of Earth Science, 2023, 34(4): 1095-1111,
CrossRef Google scholar
[]
Yu Y X, Zhou X H, Tang L J, et al.. X-Pattern Normal Faults in the Offshore Bohai Bay Basin and Its Significance on Hydrocarbon. Acta Geologica Sinica, 2009, 83(8): 1083-1088 (in Chinese with English Abstract)
[]
Zhang H, Zhao X Z, Wang J F, et al.. Hydrocarbon Migration Pathways and Its Control on Accumulation in Chengbei Fault Zone of Qikou Sag, Bohai Bay Basin, East China. Earth Science, 2023, 48(8): 3053-3067 (in Chinese with English Abstract)
[]
Zhou H M, Wang Z C, Guo Y H. Tectonic Controls on Sequence Stratigraphy in Tertiary Period in Nanbao Depression. Journal of China University of Mining & Technology, 2000, 29(3): 326-330 (in Chinese with English Abstract)
[]
Zhou H M, Wei Z W, Cao Z H, et al.. Relatioship between Formation, Evolution and Hydrocarbon in Nanpu Sag. Oil & Gas Geology, 2000, 21(4): 345-349 (in Chinese with English Abstract)
[]
Zhou T W, Zhou J X. Formation Mechanism of X-Pattern Normal Faults during Late Cenozoic and Their Impact on Hydrocarbon Accumulation in the Nanpu Sag of Bohai Bay Basin. Geotectonica et Metallogenia, 2008, 32(1): 20-27 (in Chinese with English Abstract)

Accesses

Citations

Detail

Sections
Recommended

/