Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Thomas B. Charlton"'
Publikováno v:
Langmuir. 36:84-95
Methane bubble dispersions in a water column can be observed in both vertical subsea piping as well as subsea gas seepages. Hydrate growth has been shown to occur at the gas-water interface under flowing conditions, yet the majority of the current li
Autor:
Michael L. Johns, Zachary M. Aman, Mauricio Di Lorenzo, Eric F. May, Carolyn A. Koh, Thomas B. Charlton, Luis E. Zerpa
Publikováno v:
Energy & Fuels. 32:1012-1023
The current hydrate kinetics model implemented in the multiphase flow simulator OLGA treats hydrate growth in oil-continuous systems by considering the solidification of emulsified water droplets to form a hydrate-in-oil slurry that is assumed to be
Publikováno v:
Day 2 Wed, March 21, 2018.
Transport in subsea gas gathering networks of hydrocarbons liberated from natural hydrate deposits poses many of the same risks as faced in more traditional hydrocarbon production. There is an inherent need to ensure that these fluids do not recombin
Autor:
Vishal Srivastava, Ahmad A. A. Majid, David T. Wu, J. A. Dapena, Carolyn A. Koh, Yan Wang, A. A. Gardner, Luis E. Zerpa, Thomas B. Charlton, E.D. Sloan
Publikováno v:
Day 2 Tue, May 02, 2017.
Subsea oil and gas flowlines can provide favorable conditions for gas hydrate formation, which can lead to flow assurance issues as hydrate particles agglomerate and accumulate in the flowline. Shut-in and restart operations are particularly critical
Autor:
M. Volk, Jefferson Creek, Douglas Estanga, Ahmad A. A. Majid, Amaka Waturuocha, Thomas B. Charlton, Giovanny Grasso, Ben Bbosa, Hao Qin, Mayela Rivero, Carolyn A. Koh
Publikováno v:
Day 4 Thu, May 04, 2017.
The formation of gas hydrates in subsea oil and gas flowlines is a major concern since this can cause production interruptions, and environmental and safety problems. Under gas hydrate formation conditions, hydrates can create flow restrictions, that
Publikováno v:
University of Western Australia
We present the development of a new model to predict hydrate growth and transport in gas-dominant systems, based on experimental observations of hydrate film growth and particle deposition. Incorporated as a user-defined plugin in a transient flow si
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8f9f1d7be81699e64c24f5185703e4e0
https://research-repository.uwa.edu.au/en/publications/126dfb83-c757-4b0c-80b4-7a88ca88bd00
https://research-repository.uwa.edu.au/en/publications/126dfb83-c757-4b0c-80b4-7a88ca88bd00
Autor:
Thomas B. Charlton, Stuart Kegg, Luis E. Zerpa, Julie E. P. Morgan, Eric F. May, Carolyn A. Koh, Zachary M. Aman
Publikováno v:
University of Western Australia
This study provides valuable insights into hydrate management strategies as the industry transitions away from complete hydrate avoidance, particularly for the development of deep-water reservoirs with stricter economic margins. Transient simulation
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c0aa32943af374f32724dcfb7206502e
https://research-repository.uwa.edu.au/en/publications/dabfca54-9a03-407b-8e7b-f4ecc322ae95
https://research-repository.uwa.edu.au/en/publications/dabfca54-9a03-407b-8e7b-f4ecc322ae95