Analysis and Modelling of Salt‐related Deformation in the Western Sichuan Foreland Basin, China
Анализ и моделирование деформации, связанной с солями, в передгорной впадине Западного Сычуань, Китай
2026-02-01
SCID: 54.1/vsyn4vgn
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Triassic evaporite layersWestern Sichuan Foreland Basin (WSFB)detachment foldinghard-linked fault systemssalt tectonics
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Abstract (AI)
Abstract The Western Sichuan Foreland Basin (WSFB) in South China, a prolific hydrocarbon province, exhibits complex structural deformation influenced by Triassic salt tectonics. This paper integrates seismic data and well data to elucidate the role of Middle–Lower Triassic evaporite layers in shaping basin structures, focusing on Xinchang Tectonic Zone (XTZ). Salt layers facilitated decoupled deformation between supra‐ and sub‐salt sequences, forming salt pillows and fault‐related folds. Three distinct structural trends were identified in XTZ. Key findings reveal that salt thickness variations correlate with deformation styles: thicker salt promoted detachment folding, while thinner salt led to hard‐linked fault systems. Sub‐salt E–NE trending reverse faults formed horsetail terminations associated with the Pengzhou faults (PzF), deviating from the primary Longmenshan thrust belt (LmsTB) orientation. Structural evolution occurred in three stages: (1) Indosinian salt deposition and foreland basin initiation; (2) Yanshanian eastward propagation of thrust systems with salt‐driven detachment folding; (3) Himalayan reactivation overprinting earlier structures with sub‐NS trending folds. This work establishes a direct link between salt layers and structural traps, demonstrating how salt acted as a critical detachment layer during multi‐stage compression. Results provide insights into the gas exploration of the Late Triassic Xujiahe Formation, emphasizing the importance of salt‐influenced deformation in foreland basin systems.
Key Findings
1
Middle–Lower Triassic evaporite (salt) layers in the Western Sichuan Foreland Basin caused decoupled deformation between supra- and sub-salt sequences, producing salt pillows and fault-related folds.
2
Salt layers acted as a critical detachment layer that directly controlled formation of structural traps, with implications for gas exploration of the Late Triassic Xujiahe Formation.
3
Structural evolution occurred in three stages: Indosinian salt deposition and foreland initiation; Yanshanian eastward thrust propagation with salt-driven detachment folding; Himalayan reactivation producing sub-NS trending folds.
4
Three distinct structural trends were identified in the Xinchang Tectonic Zone, with sub-salt E–NE trending reverse faults forming horsetail terminations linked to Pengzhou faults and deviating from the Longmenshan thrust belt orientation.
5
Variation in salt thickness controls deformation style: thicker salt favors detachment folding, while thinner salt leads to hard-linked fault systems.
Research Object
Middle–Lower Triassic evaporite (salt) layers in the Western Sichuan Foreland Basin (with associated supra- and sub-salt sequences and related structural features in the Xinchang Tectonic Zone)
Research Subject
Salt-related deformation and its controls on basin structural styles and trap formation, including decoupled deformation, salt pillows, fault-related folds, thickness-dependent detachment folding versus hard-linked faulting, fault geometries (horsetail terminations), and multi-stage tectonic evolution affecting hydrocarbon trap development in the Xinchang Tectonic Zone
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2026-02-01
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