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Article

Stages and Evolution of Strike-Slip Faults of the Ultra-Deep-Burial Ordovician Strata in Fuman Oilfield, Tarim Basin: Evidence from U-Pb Geochronology of Siliceous Minerals

by
Chao Yao
1,
Zhanfeng Qiao
2,3,
Xiao Luo
1,
Tianfu Zhang
2,3,*,
Bing Li
1,
Shaoying Chang
2,3,
Zhenyu Zhang
1 and
Jiajun Chen
2
1
Tarim Oilfield Company, PetroChina, Korla 841000, China
2
Hangzhou Research Institute of Geology, PetroChina, Hangzhou 310023, China
3
State Energy Key Laboratory of Carbonate Oil and Gas, Hangzhou 310023, China
*
Author to whom correspondence should be addressed.
Minerals 2025, 15(3), 270; https://doi.org/10.3390/min15030270
Submission received: 20 January 2025 / Revised: 26 February 2025 / Accepted: 4 March 2025 / Published: 6 March 2025
(This article belongs to the Special Issue Deformation, Diagenesis, and Reservoir in Fault Damage Zone)

Abstract

Siliceous minerals with the property of resistance to diagenetic alteration precipitate during the migration of hydrothermal fluids through strike-slip faults and the interaction of these fluids with host rocks during fault activity. Based on petrological analyses and U-Pb dating of siliceous minerals, the stages of strike-slip faulting of the ultra-deep-burial Ordovician in the Fuman oilfield were subdivided and their evolutionary process was discussed in combination with seismic interpretation. The results reveal the following: (1) the strike-slip faults contain hydrothermal siliceous minerals, including cryptocrystalline silica, crystalline silica, and radial silica. (2) Based on the twelve U-Pb ages of siliceous minerals (ranging from 458 ± 78 Ma to 174 ± 35 Ma) and five U-Pb ages of calcite, the activity of the strike-slip faults was divided into six stages: the Middle Caledonian, Late Caledonian, Early Hercynian, Middle Hercynian, Late Hercynian, and Yanshanian, corresponding to twelve siliceous U-Pb ages ranging from 458 ± 78 Ma to 174 ± 35 Ma, and five calcitic U-Pb ages. The Late Caledonian and Early Hercynian were the main periods of strike-slip fault activity, while the Late Hercynian period marked the final period of the fault system. (3) Later-stage faults inherited and developed from pre-existing faults. Steep linear strike-slip faults formed during the Middle and Late Caledonian movements. During the Late Hercynian and Yanshanian movements, mid-shallow faults, branch faults, and shallow echelon faults developed on the foundation of these linear faults. The methods and results of this study can guide future hydrocarbon exploration in the Fuman oilfield and can be applied to areas with similar tectonic backgrounds.
Keywords: siliceous mineral; U-Pb dating; strike-slip fault; ultra-deep; Tarim Basin siliceous mineral; U-Pb dating; strike-slip fault; ultra-deep; Tarim Basin

Share and Cite

MDPI and ACS Style

Yao, C.; Qiao, Z.; Luo, X.; Zhang, T.; Li, B.; Chang, S.; Zhang, Z.; Chen, J. Stages and Evolution of Strike-Slip Faults of the Ultra-Deep-Burial Ordovician Strata in Fuman Oilfield, Tarim Basin: Evidence from U-Pb Geochronology of Siliceous Minerals. Minerals 2025, 15, 270. https://doi.org/10.3390/min15030270

AMA Style

Yao C, Qiao Z, Luo X, Zhang T, Li B, Chang S, Zhang Z, Chen J. Stages and Evolution of Strike-Slip Faults of the Ultra-Deep-Burial Ordovician Strata in Fuman Oilfield, Tarim Basin: Evidence from U-Pb Geochronology of Siliceous Minerals. Minerals. 2025; 15(3):270. https://doi.org/10.3390/min15030270

Chicago/Turabian Style

Yao, Chao, Zhanfeng Qiao, Xiao Luo, Tianfu Zhang, Bing Li, Shaoying Chang, Zhenyu Zhang, and Jiajun Chen. 2025. "Stages and Evolution of Strike-Slip Faults of the Ultra-Deep-Burial Ordovician Strata in Fuman Oilfield, Tarim Basin: Evidence from U-Pb Geochronology of Siliceous Minerals" Minerals 15, no. 3: 270. https://doi.org/10.3390/min15030270

APA Style

Yao, C., Qiao, Z., Luo, X., Zhang, T., Li, B., Chang, S., Zhang, Z., & Chen, J. (2025). Stages and Evolution of Strike-Slip Faults of the Ultra-Deep-Burial Ordovician Strata in Fuman Oilfield, Tarim Basin: Evidence from U-Pb Geochronology of Siliceous Minerals. Minerals, 15(3), 270. https://doi.org/10.3390/min15030270

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