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- W4387359957 abstract "Abstract Conventionally, a cylindrical channel square-edged port is used to transport the gas from the annulus to the tubing. However, insufficient gas injection, incorrect port diameter size, and gas injection rate variation generally result in unstable flow condition with such ports. To overcome these problems, multiple Converging Gas Lift Ports have been designed with an objective to stabilize the gas injection thus minimizing the fluctuation in tubing pressures. This technology has been applied in 13 gas lift wells and has resulted in a liquid production increment of approximately 80 m3/d. The converging flow geometry of the novel gas lift valve has three directional ports which address the challenges posed by the subcritical flow regime as seen in the conventional valves. By achieving a critical flow regime with a low pressure differential, it offers a potential solution for operating more effectively in gas lift applications. Additionally, the use of Three Pressure Recording provides valuable insights into the performance and stability of the gas lift system. These advancements can be instrumental in maximizing production and addressing issues such as casing heading problems and tubing instability, especially in reservoirs with active water drive or mixed drive mechanisms. The paper addresses the challenges faced using conventional gas lift valves and details out various benefits of the novel technology. The parent company is the pioneer in implementing this breakthrough technology in one of the highest producing onshore fields which has resulted in substantial liquid and oil gain as brought out in the paper. The technology discussed offers a promising solution for operators aiming to improve production performance and maximize the recovery of hydrocarbon resources in their fields." @default.
- W4387359957 created "2023-10-06" @default.
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- W4387359957 date "2023-10-06" @default.
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- W4387359957 title "Removal of Flow Instability Through the Use of Multiple Converging Gas Lift Ports (MCGLP) in Gas Lift Wells" @default.
- W4387359957 cites W2343871342 @default.
- W4387359957 doi "https://doi.org/10.2118/215481-ms" @default.
- W4387359957 hasPublicationYear "2023" @default.
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