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Gas Invasion Patterns in Saturated Marine Sediments
Peng Wang1,2, Lujun Wang1,3, Bin Zhu1,3
1Institute of Hypergravity Science and Technology, Zhejiang University, Hangzhou 310058, P. R. China.
None:
Gas invasion into fluid-saturated marine sediments is relevant to various geophysical and environmental processes, such as the formation of gas hydrate reservoirs and their behavior during depressurization-based gas production. The link between pore-scale mechanisms and macroscopic invasion patterns as well as their governing parameters, especially under high stress and intense flux conditions, remains unclear. We study gas invasion into water-saturated marine sediments using a coupled framework of the discrete element method and pore network modeling. We show that two dimensionless numbers, the stress number Σ and the seepage number D, govern five representative gas invasion patterns of capillary fracturing, capillary invasion, viscous fingering, seepage fracturing, and the transitional morphologies among them. The capillary number C, the stress number Σ, and the seepage number D collectively determine the shear, tensile, or cavity dominated fracturing in marine sediments. The results provide a description of gas migration regime transitions in marine sediments, which can help establish a scientific foundation to explain the development of marine cold seeps in nature and to design gas hydrate exploitation strategies.
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Solid samples include a variety of substances, such as sediments from water bodies, soil, metals, and biological tissues. Two standard methods for extracting sediments from water bodies are grab sampling and piston coring. Grab sampling involves using a device to collect a discrete sediment sample from the bottom of a water body with minimal disturbance. Grab samples do not always represent the entire area due to...

