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K Oglesby - One of the best experts on this subject based on the ideXlab platform.

  • utilization of gas Liquid cylindrical cyclone glcc compact separator for solids removal part i minimum required Liquid Injection Rate
    ASME 2009 28th International Conference on Ocean Offshore and Arctic Engineering, 2009
    Co-Authors: R Arismendi, L Gomez, Shoubo Wang, Ram S Mohan, Ovadia Shoham, K Oglesby
    Abstract:

    The hydrodynamic behavior of gas-Liquid-solids in a modified GLCC?? has been studied for the first time experimentally and theoretically. A GLCC?? experimental facility has been designed, constructed and utilized to acquire data on gas-solid-Liquid flow in both upstream 2-inch Injection line horizontal section and in the 3-inch GLCC?? . Experimental data have been acquired for the minimum gas velocity required to transport the solids up to the Liquid Injection point, and for the minimum Liquid Injection Rate necessary to wet the solids and capture them in the Liquid phase. The data have been acquired for 4 solid particle sizes of 5 ??m, 25 ??m, 50 ??m and 150 ??m. A mechanistic model has been developed or modified for solids transport/ separation, for the prediction of the minimum transport gas velocity, and the required minimum Liquid Injection Rate. A comparison between the model prediction and the acquired experimental data shows good agreement. The average relative error for minimum transport gas and Liquid velocities are, 4.3% and 9.55%, respectively.Copyright ?? 2009 by ASME

R Arismendi - One of the best experts on this subject based on the ideXlab platform.

  • utilization of gas Liquid cylindrical cyclone glcc compact separator for solids removal part i minimum required Liquid Injection Rate
    ASME 2009 28th International Conference on Ocean Offshore and Arctic Engineering, 2009
    Co-Authors: R Arismendi, L Gomez, Shoubo Wang, Ram S Mohan, Ovadia Shoham, K Oglesby
    Abstract:

    The hydrodynamic behavior of gas-Liquid-solids in a modified GLCC?? has been studied for the first time experimentally and theoretically. A GLCC?? experimental facility has been designed, constructed and utilized to acquire data on gas-solid-Liquid flow in both upstream 2-inch Injection line horizontal section and in the 3-inch GLCC?? . Experimental data have been acquired for the minimum gas velocity required to transport the solids up to the Liquid Injection point, and for the minimum Liquid Injection Rate necessary to wet the solids and capture them in the Liquid phase. The data have been acquired for 4 solid particle sizes of 5 ??m, 25 ??m, 50 ??m and 150 ??m. A mechanistic model has been developed or modified for solids transport/ separation, for the prediction of the minimum transport gas velocity, and the required minimum Liquid Injection Rate. A comparison between the model prediction and the acquired experimental data shows good agreement. The average relative error for minimum transport gas and Liquid velocities are, 4.3% and 9.55%, respectively.Copyright ?? 2009 by ASME

L Gomez - One of the best experts on this subject based on the ideXlab platform.

  • utilization of gas Liquid cylindrical cyclone glcc compact separator for solids removal part i minimum required Liquid Injection Rate
    ASME 2009 28th International Conference on Ocean Offshore and Arctic Engineering, 2009
    Co-Authors: R Arismendi, L Gomez, Shoubo Wang, Ram S Mohan, Ovadia Shoham, K Oglesby
    Abstract:

    The hydrodynamic behavior of gas-Liquid-solids in a modified GLCC?? has been studied for the first time experimentally and theoretically. A GLCC?? experimental facility has been designed, constructed and utilized to acquire data on gas-solid-Liquid flow in both upstream 2-inch Injection line horizontal section and in the 3-inch GLCC?? . Experimental data have been acquired for the minimum gas velocity required to transport the solids up to the Liquid Injection point, and for the minimum Liquid Injection Rate necessary to wet the solids and capture them in the Liquid phase. The data have been acquired for 4 solid particle sizes of 5 ??m, 25 ??m, 50 ??m and 150 ??m. A mechanistic model has been developed or modified for solids transport/ separation, for the prediction of the minimum transport gas velocity, and the required minimum Liquid Injection Rate. A comparison between the model prediction and the acquired experimental data shows good agreement. The average relative error for minimum transport gas and Liquid velocities are, 4.3% and 9.55%, respectively.Copyright ?? 2009 by ASME

Shoubo Wang - One of the best experts on this subject based on the ideXlab platform.

  • utilization of gas Liquid cylindrical cyclone glcc compact separator for solids removal part i minimum required Liquid Injection Rate
    ASME 2009 28th International Conference on Ocean Offshore and Arctic Engineering, 2009
    Co-Authors: R Arismendi, L Gomez, Shoubo Wang, Ram S Mohan, Ovadia Shoham, K Oglesby
    Abstract:

    The hydrodynamic behavior of gas-Liquid-solids in a modified GLCC?? has been studied for the first time experimentally and theoretically. A GLCC?? experimental facility has been designed, constructed and utilized to acquire data on gas-solid-Liquid flow in both upstream 2-inch Injection line horizontal section and in the 3-inch GLCC?? . Experimental data have been acquired for the minimum gas velocity required to transport the solids up to the Liquid Injection point, and for the minimum Liquid Injection Rate necessary to wet the solids and capture them in the Liquid phase. The data have been acquired for 4 solid particle sizes of 5 ??m, 25 ??m, 50 ??m and 150 ??m. A mechanistic model has been developed or modified for solids transport/ separation, for the prediction of the minimum transport gas velocity, and the required minimum Liquid Injection Rate. A comparison between the model prediction and the acquired experimental data shows good agreement. The average relative error for minimum transport gas and Liquid velocities are, 4.3% and 9.55%, respectively.Copyright ?? 2009 by ASME

Ram S Mohan - One of the best experts on this subject based on the ideXlab platform.

  • utilization of gas Liquid cylindrical cyclone glcc compact separator for solids removal part i minimum required Liquid Injection Rate
    ASME 2009 28th International Conference on Ocean Offshore and Arctic Engineering, 2009
    Co-Authors: R Arismendi, L Gomez, Shoubo Wang, Ram S Mohan, Ovadia Shoham, K Oglesby
    Abstract:

    The hydrodynamic behavior of gas-Liquid-solids in a modified GLCC?? has been studied for the first time experimentally and theoretically. A GLCC?? experimental facility has been designed, constructed and utilized to acquire data on gas-solid-Liquid flow in both upstream 2-inch Injection line horizontal section and in the 3-inch GLCC?? . Experimental data have been acquired for the minimum gas velocity required to transport the solids up to the Liquid Injection point, and for the minimum Liquid Injection Rate necessary to wet the solids and capture them in the Liquid phase. The data have been acquired for 4 solid particle sizes of 5 ??m, 25 ??m, 50 ??m and 150 ??m. A mechanistic model has been developed or modified for solids transport/ separation, for the prediction of the minimum transport gas velocity, and the required minimum Liquid Injection Rate. A comparison between the model prediction and the acquired experimental data shows good agreement. The average relative error for minimum transport gas and Liquid velocities are, 4.3% and 9.55%, respectively.Copyright ?? 2009 by ASME