The Vapor Extraction (VAPEX) Process in Fractured Heavy Oil Systems

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The Vapor Extraction (VAPEX) has been studied theoretically and experimentally. In the first part of this work, the VAPEX process was simulated using a compositional simulator on conventional and fractured systems. Different patterns of solvent flow in fractured model comparing to the conventional model, solvent spread through fractures matrix, formation of solvent chamber, and oil recovery factor under different solvent injection schemes, effects of diffusion and fracture spacing on the process were studied and discussed. A significant finding for the application of the VAPEX process in fractured reservoirs was that fractures of poor connectivity improve the effectiveness of VAPEX process. In the second part of this work, the VAPEX process was studied experimentally using a rectangular physical model. Propane ( pure and mixed with methane) was used as solvent in all experiments. It was found that heavy oil recovery is improved as the approach pressure, defined as the saturation pressure minus operating pressure, decreases regardless of solvent composition or operating pressure. These results provide a better insight into field scale implementation of the VAPEX process.

Autorentext
Dr Reza Azin holds a PhD in Petroleum Engineering with a BSc and MSc in Chemical Engineering. His research interests covers Reservoir Modeling and Simulations with a focus on Gas/Condensate, Phase behavior of hydrocarbons, Acid Gas Disposal and Carbon Capture and sequestration. He is currently an Assistant Professor at Persian Gulf University, Iran

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Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783659301964
    • Sprache Englisch
    • Größe H220mm x B220mm x T150mm
    • Jahr 2012
    • EAN 9783659301964
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-659-30196-4
    • Titel The Vapor Extraction (VAPEX) Process in Fractured Heavy Oil Systems
    • Autor Reza Azin
    • Untertitel Theoretical and Experimental Studies of the VAPEX Process
    • Herausgeber LAP Lambert Academic Publishing
    • Anzahl Seiten 184
    • Genre Luft- und Raumfahrttechnik

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