Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation

Naturally-occurring hydrates are promising resources. The potential value of gas accumulation in naturally-occurring gas hydrates can exceed 16 equivalent trillion tons of oil. There are many accurate findings on properties of gas hydrates. This is especially true for laboratory formed gas hydrates,...

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Main Author: Kim, Brice Yoonshik
Other Authors: Akkutlu, Ibrahim Yucel, Barrufet, Maria Antonieta, Sanchez, Marcelo-Javier
Format: Thesis
Language:English
Published: 2015
Subjects:
Online Access:http://hdl.handle.net/1969.1/154099
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record_format openpolar
spelling fttexasamuniv:oai:oaktrust.library.tamu.edu:1969.1/154099 2023-07-16T03:59:30+02:00 Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation Kim, Brice Yoonshik Akkutlu, Ibrahim Yucel Barrufet, Maria Antonieta Sanchez, Marcelo-Javier 2015-04-28T15:34:59Z application/pdf http://hdl.handle.net/1969.1/154099 en eng http://hdl.handle.net/1969.1/154099 Hydrate Methane Hydrate Resources Petroleum Engineering Stability Memory-Effect Gas Hydrate Experiment Simulation Thesis text 2015 fttexasamuniv 2023-06-27T22:48:57Z Naturally-occurring hydrates are promising resources. The potential value of gas accumulation in naturally-occurring gas hydrates can exceed 16 equivalent trillion tons of oil. There are many accurate findings on properties of gas hydrates. This is especially true for laboratory formed gas hydrates, but many of definite physical properties are not completely understood. More importantly, in terms of production point of view, the conditions of formation as well as stable existence of naturally occurring gas hydrate deposits are still not well known. These difficulties are further complicated by the structural memory-effect of water on hydrate re-formation, a phenomenon in which previously hydrate-formed liquid re-forms hydrate more readily. This research mainly focused on the stability of hydrate existence in various condition to determine how the water-gas system with previous hydrate history affects the re-formation of hydrates, both experimentally and numerically using the molecular dynamic simulation. Thesis Methane hydrate Texas A&M University Digital Repository
institution Open Polar
collection Texas A&M University Digital Repository
op_collection_id fttexasamuniv
language English
topic Hydrate
Methane Hydrate
Resources
Petroleum Engineering
Stability
Memory-Effect
Gas Hydrate
Experiment
Simulation
spellingShingle Hydrate
Methane Hydrate
Resources
Petroleum Engineering
Stability
Memory-Effect
Gas Hydrate
Experiment
Simulation
Kim, Brice Yoonshik
Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation
topic_facet Hydrate
Methane Hydrate
Resources
Petroleum Engineering
Stability
Memory-Effect
Gas Hydrate
Experiment
Simulation
description Naturally-occurring hydrates are promising resources. The potential value of gas accumulation in naturally-occurring gas hydrates can exceed 16 equivalent trillion tons of oil. There are many accurate findings on properties of gas hydrates. This is especially true for laboratory formed gas hydrates, but many of definite physical properties are not completely understood. More importantly, in terms of production point of view, the conditions of formation as well as stable existence of naturally occurring gas hydrate deposits are still not well known. These difficulties are further complicated by the structural memory-effect of water on hydrate re-formation, a phenomenon in which previously hydrate-formed liquid re-forms hydrate more readily. This research mainly focused on the stability of hydrate existence in various condition to determine how the water-gas system with previous hydrate history affects the re-formation of hydrates, both experimentally and numerically using the molecular dynamic simulation.
author2 Akkutlu, Ibrahim Yucel
Barrufet, Maria Antonieta
Sanchez, Marcelo-Javier
format Thesis
author Kim, Brice Yoonshik
author_facet Kim, Brice Yoonshik
author_sort Kim, Brice Yoonshik
title Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation
title_short Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation
title_full Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation
title_fullStr Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation
title_full_unstemmed Phase Equilibria Studies in Water-Methane System: Structural Memory-Effect of Water On Hydrate Re-Formation
title_sort phase equilibria studies in water-methane system: structural memory-effect of water on hydrate re-formation
publishDate 2015
url http://hdl.handle.net/1969.1/154099
genre Methane hydrate
genre_facet Methane hydrate
op_relation http://hdl.handle.net/1969.1/154099
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