Engineering Geological Characterization and Microtopographic Controls on Slide–Pipeline Interaction in Steep Submarine Canyons, Qiongdongnan Basin

Steep submarine canyons pose challenges to deep-water pipeline routing because of rugged terrain and slide-related hazards. This study integrates 3D seismic data, shipborne and autonomous underwater vehicle bathymetry, sub-bottom profiles, sediment testing, and numerical simulations to characterize engineering geological conditions and examine local terrain effects on slide–pipeline interaction in the Qiongdongnan Basin. Canyons, landslides/slumps, and scarps were identified as the principal engineering geological units, while high-resolution AUV data constrained representative depressions, ridges, and terrain asymmetry along the planned pipeline corridor. A post-failure fluidized mass was modeled using a Herschel–Bulkley relationship fitted to fully remolded site sediment. Thirty independent simulations compared five alternative fixed, non-buried pipeline locations under six field-informed terrain scenarios. The numerical framework was assessed through grid-sensitivity analysis and quantitative comparison with a published flume-derived drag relationship. Under fixed-pipeline and quiescent-water conditions, depressions confined moving material near the terrain base, whereas ridges produced more variable flow and loading patterns. Pipeline loading also varied with terrain asymmetry, approach direction, and relative pipeline position. The results provide screening-level guidance for identifying terrain-sensitive route sections requiring site-specific pipeline–soil–structure assessment.

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Publication Details

Journal
Journal of Marine Science and Engineering
Published
2026-09-16
DOI
https://doi.org/10.3390/jmse14181720
Primary Topic
Geotechnical Engineering and Underground Structures
Type
article
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article

Engineering Geological Characterization and Microtopographic Controls on Slide–Pipeline Interaction in Steep Submarine Canyons, Qiongdongnan Basin

Xiaolei Liu, Yin Wang, Yide Wang, Guangzong Wang et al.
Journal of Marine Science and Engineering
Geotechnical Engineering and Underground Structures
article

Engineering Geological Characterization and Microtopographic Controls on Slide–Pipeline Interaction in Steep Submarine Canyons, Qiongdongnan Basin

Xiaolei Liu, Yin Wang, Yide Wang, Guangzong Wang, Hao Li, Hua Tao, Huajie Yu
article en

Abstract

Steep submarine canyons pose challenges to deep-water pipeline routing because of rugged terrain and slide-related hazards. This study integrates 3D seismic data, shipborne and autonomous underwater vehicle bathymetry, sub-bottom profiles, sediment testing, and numerical simulations to characterize engineering geological conditions and examine local terrain effects on slide–pipeline interaction in the Qiongdongnan Basin. Canyons, landslides/slumps, and scarps were identified as the principal engineering geological units, while high-resolution AUV data constrained representative depressions, ridges, and terrain asymmetry along the planned pipeline corridor. A post-failure fluidized mass was modeled using a Herschel–Bulkley relationship fitted to fully remolded site sediment. Thirty independent simulations compared five alternative fixed, non-buried pipeline locations under six field-informed terrain scenarios. The numerical framework was assessed through grid-sensitivity analysis and quantitative comparison with a published flume-derived drag relationship. Under fixed-pipeline and quiescent-water conditions, depressions confined moving material near the terrain base, whereas ridges produced more variable flow and loading patterns. Pipeline loading also varied with terrain asymmetry, approach direction, and relative pipeline position. The results provide screening-level guidance for identifying terrain-sensitive route sections requiring site-specific pipeline–soil–structure assessment.

Journal of Marine Science and EngineeringVol. 14(18)
Shaoxing University (CN), Ocean University of China (CN), China National Petroleum Corporation (China) (CN)
Life below water
Openalex Percentile: Top 16%
Geotechnical Engineering and Underground Structures
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