Megan Elwood Madden, Shannon Ulrich
In order for methane to be economically produced from the seafloor, prediction and detection of massive hydrate deposits will be necessary. In many cases, hydrate samples recovered from seafloor sediments appear as veins or nodules, suggesting that there are strong geologic controls on where hydrate is likely to accumulate. Experiments have been conducted examining massive hydrate accumulation from methane gas bubbles within natural and synthetic sediments in a large volume pressure vessel through temperature and pressure data, as well as visual observations. Observations of hydrate growth suggest that accumulation of gas bubbles within void spaces and at sediment interfaces likely results in the formation of massive hydrate deposits. Methane hydrate was first observed as a thin film forming at the gas/water interface of methane bubbles trapped within sediment void spaces. As bubbles accumulated, massive hydrate growth occurred. These experiments suggest that in systems containing free methane gas, bubble pathways and accumulation points likely control the location and habit of massive hydrate deposits.
@article{f3a85b68-247f-4853-a494-be2a5d519eb1,
title={Experimental formation of massive hydrat},
author={Megan Elwood Madden and Shannon Ulrich},
year={2026},
language={en}
}TY - JOUR TI - Experimental formation of massive hydrat AU - Megan Elwood Madden AU - Shannon Ulrich PY - 2026 LA - en ER -
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