Apparent Viscosity Measurements in the Quantification of Gas Hydrate Slurry Transportability with Anti-Agglomerants in Multiphase Systems with and without Wax
Gas hydrate management with the application of antiagglomerants to produce a transportable hydrate slurry is a strategy that requires well-defined knowledge of the fluid and suspension properties to ensure low/no risk for disruptions to the production of hydrocarbon fluids. One of the key properties...
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Published in: | Energy & fuels Vol. 38; no. 17; pp. 16125 - 16132 |
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Main Authors: | , , , , , |
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Language: | English |
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American Chemical Society
05-09-2024
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Abstract | Gas hydrate management with the application of antiagglomerants to produce a transportable hydrate slurry is a strategy that requires well-defined knowledge of the fluid and suspension properties to ensure low/no risk for disruptions to the production of hydrocarbon fluids. One of the key properties in transportability is the apparent and relative viscosity of the hydrate slurry, which can be used to assess the flowability in flowlines. Here, experimental measurements of the apparent viscosity of well-defined hydrate slurries (homogeneous finely dispersed suspension of solids) were obtained from two independent testing setups (rheometer and rock-flow cell) covering a range of water cuts (10–60%) for systems without and with wax (2 and 5 wt %). Hydrates were formed from a gas mixture, mineral oil, water, and a commercial anti-agglomerant chemical. Apparent viscosities were measured before and after hydrate formation, yielding relative viscosities that exponentially increase with the solid content and precipitated wax having a significant impact on the slurry apparent viscosity. The measured relative viscosity data are consistent with well-known suspension models by using the water fraction (and wax) as the effective solid fraction, as opposed to the water conversion to hydrate or hydrate fraction, for systems using anti-agglomerants yielding homogeneous suspension of solids. |
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AbstractList | Gas hydrate management with the application of antiagglomerants to produce a transportable hydrate slurry is a strategy that requires well-defined knowledge of the fluid and suspension properties to ensure low/no risk for disruptions to the production of hydrocarbon fluids. One of the key properties in transportability is the apparent and relative viscosity of the hydrate slurry, which can be used to assess the flowability in flowlines. Here, experimental measurements of the apparent viscosity of well-defined hydrate slurries (homogeneous finely dispersed suspension of solids) were obtained from two independent testing setups (rheometer and rock-flow cell) covering a range of water cuts (10–60%) for systems without and with wax (2 and 5 wt %). Hydrates were formed from a gas mixture, mineral oil, water, and a commercial anti-agglomerant chemical. Apparent viscosities were measured before and after hydrate formation, yielding relative viscosities that exponentially increase with the solid content and precipitated wax having a significant impact on the slurry apparent viscosity. The measured relative viscosity data are consistent with well-known suspension models by using the water fraction (and wax) as the effective solid fraction, as opposed to the water conversion to hydrate or hydrate fraction, for systems using anti-agglomerants yielding homogeneous suspension of solids. |
Author | Chiarello, Conrado Palermo, Thierry Sum, Amadeu K. Fidel-Dufour, Annie Mateen, Khalid Barrientos Sandoval, Gustavo A. |
AuthorAffiliation | Phases to Flow Laboratory, Chemical and Biological Engineering Department TotalEnergies Exploration and Production |
AuthorAffiliation_xml | – name: Phases to Flow Laboratory, Chemical and Biological Engineering Department – name: TotalEnergies Exploration and Production |
Author_xml | – sequence: 1 givenname: Gustavo A. orcidid: 0000-0002-4663-9104 surname: Barrientos Sandoval fullname: Barrientos Sandoval, Gustavo A. organization: Phases to Flow Laboratory, Chemical and Biological Engineering Department – sequence: 2 givenname: Conrado orcidid: 0000-0002-1156-9513 surname: Chiarello fullname: Chiarello, Conrado organization: Phases to Flow Laboratory, Chemical and Biological Engineering Department – sequence: 3 givenname: Amadeu K. orcidid: 0000-0003-1903-4537 surname: Sum fullname: Sum, Amadeu K. email: asum@mines.edu organization: Phases to Flow Laboratory, Chemical and Biological Engineering Department – sequence: 4 givenname: Khalid surname: Mateen fullname: Mateen, Khalid – sequence: 5 givenname: Annie surname: Fidel-Dufour fullname: Fidel-Dufour, Annie organization: TotalEnergies Exploration and Production – sequence: 6 givenname: Thierry surname: Palermo fullname: Palermo, Thierry organization: TotalEnergies Exploration and Production |
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Title | Apparent Viscosity Measurements in the Quantification of Gas Hydrate Slurry Transportability with Anti-Agglomerants in Multiphase Systems with and without Wax |
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