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- W3023837669 endingPage "103340" @default.
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- W3023837669 abstract "Gas hydrate is a severe flow assurance problem in oil and gas production. Hydrate formation is a phase transition of systems containing small guest molecules and water molecules. Traditionally the industry handles hydrate challenges by keeping the systems out of the hydrate forming region. Due to the high costs, the industry is turning to hydrate slurry management, which does not prevent hydrate formation but focus on dispersing hydrate as solid particles and generating a transportable slurry. The hydrate slurry management requires a good prediction of the hydrate slurry transportability to manage the risks associated with the presence of solids, including its potential accumulation along the flowline. Hydrate slurry is a multiphase flow system with solids. On the macroscale, the porosity and effective volume of hydrate matrix are important variables to predict the overall system transportability. Despite their importance, they have not been widely discussed in the open literature. In this article, we report the hydrate formation results of different multiphase flow systems to highlight the importance of hydrate porosity and effective volume. Our results show that water, oil, and gas can all be trapped into the hydrate matrix, resulting a highly porous structure without and with additives, such as anti-agglomerants. The effective solid volume in our study was 3–10 times as large as the calculated pure hydrate volume. Our results suggest that the porosity is necessary in the multiphase models to better capture the physical characteristics and characterize the flow assurance risks." @default.
- W3023837669 created "2020-05-13" @default.
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- W3023837669 date "2020-07-01" @default.
- W3023837669 modified "2023-09-26" @default.
- W3023837669 title "Gas hydrates porosity and effective volume under multiphase flow conditions" @default.
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- W3023837669 doi "https://doi.org/10.1016/j.jngse.2020.103340" @default.
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